IP Library Granted Patent US 11,171,427
Granted Patent B2
US 11,171,427 · App. 16/747,054 · Granted Nov 9, 2021

Front-end chip for dual-pole antenna array

Inventors: Samet Zihir (San Diego, CA); Tumay Kanar (San Diego, CA)
Assignee: Integrated Device Technology, Inc.
H01Q21/0006H01Q1/2283H01Q1/48H01Q1/523H01Q1/526H01Q3/28H01Q3/36H01Q19/30H01Q21/0025H01Q21/062H01Q21/065H03F1/0211H03F1/0261H03F1/3282H03F1/565H03F3/19H03F3/195H03F3/245H03F3/45089H03F3/45475H03F3/68H03G3/3042H03H7/487H03K21/10H04B1/0458H04B1/18H04B1/401H04B1/44H04B1/48H04B7/0617H03F2200/294H03F2200/387H03F2200/451
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Quick Facts
Patent No.
US 11,171,427
App. No.
16/747,054
Granted
Nov 9, 2021
Kind
B2
Abstract

An apparatus includes a package and a beam former circuit. The package may be configured to be mounted on an antenna array at a center of four antenna elements. Each antenna element may include a dual-pole antenna having a vertical feed and a horizontal feed. The beam former circuit may be (i) disposed in the package, (ii) have a plurality of pairs of ports, (iii) configured to generate a plurality of radio-frequency signals in the ports while in a transmit mode and (iv) configured to receive the radio-frequency signals at the ports while in a receive mode. Each pair of the ports is configured to be directly connected to a respective one of the antenna elements. All of the ports may be spatially routed into alignment with the vertical feeds and the horizontal feeds in a single conductive plane of the antenna array.

Claims (26)

1. An apparatus comprising:

a plurality of pairs of ports each (i) configured to be directly connected to one of a plurality of antenna elements and (ii) spatially routed into alignment with vertical feeds and horizontal feeds in a single conductive plane of an antenna array; and

a plurality of transceiver channels (i) configured as (a) a set of horizontal transceiver channels for said horizontal feeds and (b) a set of vertical transceiver channels for said vertical feeds and (ii) configured to (a) generate a plurality of radio-frequency signals in said plurality of pairs of ports while in a transmit mode and (b) receive said radio-frequency signals at said plurality of pairs of ports while in a receive mode.

2. The apparatus according to claim 1 , wherein (i) said apparatus is disposed in a package, (ii) said package is configured to be mounted on said antenna array at a center of said plurality of antenna elements and (iii) each of said plurality of antenna elements comprise a dual-pole antenna.

3. The apparatus according to claim 2 , wherein said package comprises (i) a first dimension less than a half-wavelength of said radio-frequency signals and (ii) a second dimension less than said half-wavelength of said radio-frequency signals.

4. The apparatus according to claim 3 , wherein said half-wavelength is approximately 5 millimeters.

5. The apparatus according to claim 1 , further comprising (i) a plurality of first combiner circuits configured to route a first signal among said vertical transceiver channels and (ii) a plurality of second combiner circuits configured to route a second signal among said horizontal transceiver channels.

6. The apparatus according to claim 1 , further configured to adjust a plurality of phases and a plurality of amplitudes of said radio-frequency signals to steer a radio-frequency beam.

7. The apparatus according to claim 6 , wherein (i) said radio-frequency beam has a frequency in a range of 24 gigahertz to 44 gigahertz and (ii) said apparatus is configured to implement part of a fifth generation wireless communications system.

8. An apparatus comprising:

a package configured to be mounted at a center of four antenna elements, wherein each of said antenna elements comprises a dual-pole antenna having a vertical feed and a horizontal feed; and

a beam former circuit (i) disposed in said package, (ii) having a plurality of ports, (iii) configured to generate a plurality of radio-frequency signals in said ports while in a transmit mode and (iv) configured to receive said radio-frequency signals at said ports while in a receive mode, wherein (a) each of said plurality of ports is placed on said package with a respective one other of said plurality of ports to form a plurality of pairs of ports, (b) said plurality of pairs of ports are each configured to be directly connected to a respective one of said antenna elements and (b) all of said ports are spatially routed into alignment with said vertical feeds and said horizontal feeds in a single conductive plane of said four antenna elements.

9. The apparatus according to claim 8 , wherein said plurality of pairs of ports are symmetrically arranged around said package.

10. The apparatus according to claim 8 , wherein (i) said apparatus comprises a plurality of said beam former circuits and (ii) said beam former circuits and said antenna elements are configured to implement part of a two-dimensional antenna network.

11. The apparatus according to claim 8 , wherein said package comprises (i) a first dimension less than a half-wavelength of said radio-frequency signals and (ii) a second dimension less than said half-wavelength of said radio-frequency signals.

12. The apparatus according to claim 11 , wherein said half-wavelength is approximately 5 millimeters.

13. The apparatus according to claim 8 , wherein said beam former circuit comprises a plurality of transceiver channels configured as a set of horizontal transceiver channels and a set of vertical transceiver channels.

14. The apparatus according to claim 13 , wherein said beam former circuit further comprises (i) a plurality of first combiner circuits configured to route a first signal among said vertical transceiver channels and (ii) a plurality of second combiner circuits configured to route a second signal among said horizontal transceiver channels.

15. The apparatus according to claim 8 , wherein said beam former circuit is further configured to adjust a plurality of phases and a plurality of amplitudes of said radio-frequency signals to steer a radio-frequency beam.

16. The apparatus according to claim 15 , wherein (i) said radio-frequency beam has a frequency in a range of 24 gigahertz to 44 gigahertz and (ii) said beam former circuit is configured to implement part of a fifth generation wireless communications system.

17. An apparatus comprising:

a package configured to be mounted on an antenna array at a center of four antenna elements, wherein each of said antenna elements comprises a dual-pole antenna having a vertical feed and a horizontal feed; and

a beam former circuit (i) disposed in said package, (ii) having a plurality of pairs of ports, (iii) configured to generate a plurality of radio-frequency signals in said ports while in a transmit mode and (iv) configured to receive said radio-frequency signals at said ports while in a receive mode, wherein each one of said pairs of said ports is (a) configured to be directly connected to a respective one of said antenna elements and (b) placed in a respective corner of said package to enable isolation of said vertical feeds and said horizontal feeds in a single conductive plane of said antenna array.

18. The apparatus according to claim 17 , wherein said pairs of said ports are symmetrically arranged around said package.

19. The apparatus according to claim 17 , wherein (i) said apparatus comprises a plurality of said beam former circuits and (ii) said beam former circuits and said antenna elements are configured to implement part of a two-dimensional antenna network.

20. The apparatus according to claim 17 , wherein said package comprises (i) a first dimension less than a half-wavelength of said radio-frequency signals and (ii) a second dimension less than said half-wavelength of said radio-frequency signals.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2025
From: RENESAS ELECTRONICS AMERICA INC.
To: AXIRO SEMICONDUCTOR INC.
Reel/Frame 070864/0142 →
MERGER Recorded Apr 15, 2025
From: INTEGRATED DEVICE TECHNOLOGY, INC.
To: RENESAS ELECTRONICS AMERICA INC.
Reel/Frame 070851/0391 →
Continuity (4)
Continuation 16050112 · Jul 31, 2018
Provisional Application 62559875 · Sep 18, 2017
Provisional Application 62560173 · Sep 18, 2017
Related Publication 20200153112A1 · May 14, 2020