IP Library Granted Patent US 12,078,667
Granted Patent B1
US 12,078,667 · App. 17/175,545 · Granted Sep 3, 2024

Positioning and weighting test probes in an anechoic chamber

Inventors: Jukka-Pekka Nuutinen (Martinniemi, FI); John Douglas Reed (Arlington, TX); Alfonso Rodriguez-Herrera (Denton, TX)
Assignee: SPIRENT COMMUNICATIONS, INC.
G01R29/0821G01R29/105H04B17/102H04B17/3912H04B7/0413
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Quick Facts
Patent No.
US 12,078,667
App. No.
17/175,545
Granted
Sep 3, 2024
Kind
B1
Abstract

Disclosed is an anechoic test chamber that includes six antenna probes, replacing a single probe with a small array, and using the array to form a beam to provide a similar signal to the probe signal, and reducing the transmission loss. At least five of the probes are aligned in the anechoic chamber such that the probes are aligned in azimuth along four columns separated from a center point by +/−5 degrees and +/−15 degrees. The probes are further aligned in elevation along three rows at the center point and separated from the center point by +/−5 degrees, wherein the alignments in azimuth and elevation are within 3 degrees measured spherically of the alignments stated. Also disclosed is a planar array that replaces probe antennas and forms beams to provide coverage to the chamber, and utilizing probe arrays to emulate base station signals to evaluate UE performance.

Claims (28)

1. An anechoic test chamber, including:

a subset of six selected antenna probes that are active from a full set of probes that are available in the anechoic test chamber; and

at least five of the probes are positioned in the anechoic chamber such that

the probes are aligned in azimuth along four first lines separated from a center point by +/−5 degrees and +/−15 degrees; and

the probes are further aligned in elevation along three second lines perpendicular to the first lines at the center point and separated from the center point by +/−5 degrees; and

wherein the alignments in azimuth and elevation are within 3 degrees measured spherically of the alignments stated.

2. The anechoic test chamber of claim 1 , wherein the alignments in azimuth and elevation are within 2 degrees measured spherically of the alignments stated.

3. The anechoic test chamber of claim 1 , wherein the alignments in azimuth and elevation are within 1 degree measured spherically of the alignments stated.

4. The anechoic test chamber of claim 1 , wherein the probes are dual polarized test antennas.

5. The anechoic test chamber of claim 1 , wherein the probes are antenna arrays configurable for phase difference beam forming.

6. The anechoic test chamber of claim 5 , wherein the antenna arrays include at least 2×2 antenna elements.

7. The anechoic test chamber of claim 1 , further including RF test sources operatively coupled to deliver RF signals to the probes.

8. The anechoic test chamber of claim 7 , wherein the RF test sources deliver the RF signals at a frequency in a 5G FR2 frequency band.

9. The anechoic test chamber of claim 8 , wherein the RF test sources deliver the RF signals at a frequency in a range of 6.25 and 10.5 GHz.

10. The anechoic test chamber of claim 8 , wherein the RF test sources deliver the RF signals at a frequency of 24.25 GHz to 71 GHz.

11. The anechoic test chamber of claim 1 , wherein the alignments of five of the probes define a hexagon-like pattern that is wider than it is tall and has a missing vertex.

12. A method of testing a wireless device in an anechoic test chamber, including:

placing a wireless device under test (DUT) in an anechoic test chamber on a rotatable device holder;

exposing the DUT to signals from a subset of six active antenna probes that are selected from a full set of probes that are available in the anechoic test chamber; and

wherein at least five of the probes are positioned in the anechoic chamber such that

the probes are aligned in azimuth along four first lines separated from a center point by +/−5 degrees and +/−15 degrees; and

the probes are further aligned in elevation along three second lines perpendicular to the first lines at the center point and separated from the center point by +/−5 degrees; and

wherein the alignments in azimuth and elevation are within 3 degrees measured spherically of the alignments stated; and

conducting a test of the DUT using the signals.

13. The method of claim 12 , wherein the alignments in azimuth and elevation are within 2 degrees measured spherically of the alignments stated.

14. The method of claim 12 , wherein the alignments in azimuth and elevation are within 1 degree measured spherically of the alignments stated.

15. The method of claim 12 , wherein the probes are dual polarized test antennas.

16. The method of claim 12 , wherein the probes are antenna arrays configurable for phase difference beam forming.

Assignments (5)
RELEASE OF SECURITY INTEREST AT REEL/FRAME 73189/0873 Recorded May 28, 2026
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
To: INERTIAL LABS, INC.; VIAVI SOLUTIONS INC.; VIAVI SOLUTIONS LICENSING LLC
Reel/Frame 075642/0381 →
SECURITY INTEREST Recorded Nov 14, 2025
From: VIAVI SOLUTIONS INC.; VIAVI SOLUTIONS LICENSING LLC; INERTIAL LABS, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 073571/0137 →
SECURITY AGREEMENT Recorded Oct 21, 2025
From: INERTIAL LABS, INC.; VIAVI SOLUTIONS INC.; VIAVI SOLUTIONS LICENSING LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 073189/0873 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 20, 2025
From: SPIRENT COMMUNICATIONS, INC.
To: VIAVI SOLUTIONS LICENSING LLC
Reel/Frame 073121/0549 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2021
From: NUUTINEN, JUKKA-PEKKA; REED, JOHN DOUGLAS; RODRIGUEZ-HERRERA, ALFONSO
To: SPIRENT COMMUNICATIONS, INC.
Reel/Frame 055250/0865 →
Continuity (2)
Provisional Application 62981998 · Feb 26, 2020
Provisional Application 62976340 · Feb 13, 2020