IP Library › Granted Patent US 12,537,314
Granted Patent B2
US 12,537,314 · App. 18/115,745 · Granted Jan 27, 2026

Active phased array with integrated antennas and circuits on common printed circuit cards

Inventors: Danilo Dadic (Austin, TX); Spencer Erekson (Superior, CO); Ramez Harmaneh (Kyle, TX); Thomas Magesacher (Austin, TX); Donald Pontrelli (Austin, TX); Aaron Quan (Austin, TX); Shey Sabripour (Austin, TX); Abraham Wolfgang (Thornton, CO)
Assignee: CesiumAstro, Inc.
H01Q21/064H01Q13/0241H01Q15/24H01Q21/0025H01P1/171H01Q23/00
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Quick Facts
Patent No.
US 12,537,314
App. No.
18/115,745
Granted
Jan 27, 2026
Kind
B2
Abstract

A phased array antenna device may include a base including circuitry configured to couple to a backplane and a plurality of circuit cards arranged in parallel and coupled to circuitry of the base. Each circuit card may include an array of circularly polarized unit antenna elements integrated into the circuit card and arranged along an edge of the circuit card. Each circularly polarized unit antenna element of the array may be configured to radiate and receive electromagnetic signals directly from the edge of the circuit card. In some implementations, the edge of each circuit card may include a plurality of substrate extensions with chamfered edges formed from a substrate of the circuit card. At least a portion of some of the chamfered edges may include a metal coating.

Claims (53)

1 . A phased array antenna device comprising:

a base including circuitry configured to couple to a backplane; and

a plurality of circuit cards arranged in parallel and coupled to circuitry of the base, each circuit card comprising an array of circularly polarized unit antenna elements integrated into the circuit card and arranged along an edge of the circuit card, each circularly polarized unit antenna element of the array configured to radiate electromagnetic signals directly from the edge of the circuit card.

2 . The phased array antenna device of claim 1 , wherein the edge of the circuit card comprises:

a plurality of substrate extensions with chamfered edges formed from a substrate of the circuit card; and

wherein each substrate extension corresponds to one of the circularly polarized antenna elements; and

wherein the chamfered edges between adjacent substrate extensions form a trench that is aligned to edges of adjacent circularly polarized antenna elements of the array.

3 . The phased array antenna device of claim 2 , further comprising a metal coating formed in the trench between each of the adjacent substrate extensions.

4 . The phased array antenna device of claim 2 , wherein the substrate extension comprises an impedance matching layer.

5 . The phased array antenna device of claim 1 , wherein:

the array of circularly polarized unit antenna elements of each circuit card is asymmetrical about a center line of the circuit card; and

the plurality of circuit cards is configured such that every other circuit card is rotated 180 degrees relative to adjacent circuit cards to produce a triangular lattice configuration of the circularly polarized unit antenna elements.

6 . The phased array antenna device of claim 1 , wherein each circularly polarized antenna element comprises:

a septum polarizer integrated into and formed at the edge of the circuit card; and

a pair of substrate integrated waveguides configured to be selectively activated, each substrate integrated waveguide including a rectangular aperture and stacked such that the pair of substrate integrated waveguides form a square aperture to direct excitation signals from a selected one of the substrate integrated waveguides to the septum polarizer.

7 . The phased array antenna device of claim 6 , wherein:

the pair of substrate integrated waveguides includes a first substrate integrated waveguide having a first input port and a second substrate integrated waveguide having a second input port;

the first substrate integrated waveguide configured to excite the septum polarizer to provide an output signal having a first polarization in response to a signal received at the first input port; and

the second substrate integrated waveguide configured to excite the septum polarizer to provide the output signal having a second polarization in response to a signal received at the second input port.

8 . A phased array antenna device comprising:

a plurality of circuit cards arranged in parallel, each circuit card comprising:

an array of circularly polarized unit antenna elements integrated into the circuit card and arranged along an edge of the circuit card, each circularly polarized unit antenna element of the array configured to radiate electromagnetic signals directly from the edge of the circuit card; and

a plurality of substrate extensions with chamfered edges formed from a substrate of the circuit card along the edge, each substrate extension corresponding to one of circularly polarized unit antenna elements.

9 . The phased array antenna device of claim 8 , wherein the chamfered edges between adjacent substrate extensions form a trench that is aligned to edges of adjacent circularly polarized antenna elements of the array.

10 . The phased array antenna device of claim 9 , further comprising a metal coating formed in the trench between each of the adjacent substrate extensions.

11 . The phased array antenna device of claim 8 , wherein the substrate extension comprises an impedance matching layer.

12 . The phased array antenna device of claim 8 , wherein:

the array of circularly polarized unit antenna elements of each circuit card is asymmetrical about a center line of the circuit card; and

the plurality of circuit cards is configured such that every other circuit card is rotated 180 degrees relative to adjacent circuit cards to produce a triangular lattice configuration of the circularly polarized unit antenna elements.

13 . The phased array antenna device of claim 8 , further comprising a base including:

a connector configured to couple to a backplane; and

circuitry coupled to the connector configured to couple to each circuit card to communicatively couple the array of circularly polarized unit antenna element to the backplane.

14 . The phased array antenna device of claim 8 , wherein each circularly polarized antenna element comprises:

a septum polarizer integrated into and formed at the edge of the circuit card; and

a pair of substrate integrated waveguides configured to be selectively activated, each substrate integrated waveguide including a rectangular aperture and stacked such that the pair of substrate integrated waveguides form a square aperture to direct excitation signals from a selected one of the substrate integrated waveguides to the septum polarizer.

15 . The phased array antenna device of claim 14 , wherein:

the pair of substrate integrated waveguides includes a first substrate integrated waveguide having a first input port and a second substrate integrated waveguide having a second input port;

the first substrate integrated waveguide configured to excite the septum polarizer to provide an output signal having a first polarization in response to a signal received at the first input port; and

the second substrate integrated waveguide configured to excite the septum polarizer to provide the output signal having a second polarization in response to a signal received at the second input port.

16 . A phased array antenna device comprising:

a base including:

a connector configured to couple to a backplane; and circuitry coupled to the connector; and

a plurality of circuit cards arranged in parallel and coupled to the circuitry of the base, each circuit card comprising:

an array of circularly polarized unit antenna elements integrated into and arranged along an edge of the circuit card and configured to radiate electromagnetic signals directly from the edge of the circuit card; and

a plurality of substrate extensions with chamfered edges formed from a substrate of the circuit card along the edge, one or more of the substrate extensions corresponding to one of circularly polarized unit antenna elements.

17 . The phased array antenna device of claim 16 , wherein the chamfered edges between adjacent substrate extensions form a trench that is aligned to edges of adjacent circularly polarized antenna elements of the array, each circuit card further comprising: a metal coating formed in the trench between each of the adjacent substrate extensions.

18 . The phased array antenna device of claim 16 , wherein the substrate extension comprises an impedance matching layer.

19 . The phased array antenna device of claim 16 , wherein:

the array of circularly polarized unit antenna elements of each circuit card is asymmetrical about a center line of the circuit card; and

each of the plurality of circuit cards is configured such that every other circuit card is rotated 180 degrees relative to adjacent circuit cards to produce a triangular lattice configuration of the circularly polarized unit antenna elements.

20 . The phased array antenna device of claim 16 , wherein each circularly polarized antenna element comprises:

a septum polarizer integrated into and formed at the edge of the circuit card; and

a pair of substrate integrated waveguides configured to be selectively activated, each substrate integrated waveguide including a rectangular aperture and stacked such that the pair of substrate integrated waveguides form a square aperture to direct excitation signals from a selected one of the substrate integrated waveguides to the septum polarizer.

Assignments (3)
SECURITY INTEREST Recorded Mar 31, 2026
From: CESIUMASTRO INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 074237/0150 →
SECURITY INTEREST Recorded Feb 24, 2026
From: CESIUMASTRO INC.
To: EXPORT-IMPORT BANK OF THE UNITED STATES
Reel/Frame 073879/0969 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2025
From: DADIC, DANILO; EREKSON, SPENCER; HARMANEH, RAMEZ; MAGESACHER, THOMAS; PONTRELLI, DONALD; QUAN, AARON; SABRIPOUR, SHEY; WOLFGANG, ABRAHAM
To: CESIUMASTRO, INC.
Reel/Frame 071373/0866 →
Continuity (1)
Related Publication 20250210882A1 · Jun 26, 2025
References Cited (2)
US 20170263991A1 · Jensen · 2017 [cited by examiner]
US 20190190161A1 · Hollenbeck · 2019 [cited by examiner]