IP Library › Granted Patent US 12,276,677
Granted Patent B1
US 12,276,677 · App. 17/862,060 · Granted Apr 15, 2025

Waveguide alignment system with dual plates

Inventors: Dhanraj Vikram Doshi (Torrance, CA); Yonghui Shu (Rolling Hills Estates, CA)
Assignee: SAGE Millimeter, Inc.
G01R1/0416G01R31/2822
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Quick Facts
Patent No.
US 12,276,677
App. No.
17/862,060
Granted
Apr 15, 2025
Kind
B1
Abstract

A waveguide alignment system with dual plates is disclosed. The disclosed system comprises: a base component, a lower plate coupled to the base component, and an upper plate coupled to the lower plate, wherein the upper plate is configured to attach to an electronic testing equipment component.

Claims (39)

1. A waveguide alignment system, comprising:

a base component, wherein the base component includes a rail;

a lower plate coupled to the base component; and

an upper plate coupled to the lower plate, wherein the upper plate is configured to attach to an electronic testing equipment component,

wherein the electronic testing equipment component is coupled to a waveguide component comprising one or more alignment pins that are configured to engage a device under test.

2. The waveguide alignment system of claim 1 , wherein the rail includes two parallel tracks.

3. The waveguide alignment system of claim 1 , wherein the base component further includes a plurality of attachment block units configured to slide along the rail.

4. The waveguide alignment system of claim 3 , wherein the lower plate is coupled to the plurality of attachment block units.

5. The waveguide alignment system of claim 1 , further comprising at least one spring and screw assembly.

6. The waveguide alignment system of claim 5 , wherein the at least one spring and screw assembly includes a screw positioned at least in part within a compression spring.

7. The waveguide alignment system of claim 5 , wherein the upper plate is coupled to the lower plate at least in part via the at least one spring and screw assembly.

8. The waveguide alignment system of claim 5 , wherein the at least one spring and screw assembly is configured to maintain an adjustable gap between the upper plate and the lower plate.

9. The waveguide alignment system of claim 1 , further comprising a plurality of fasteners that couple the base component to the lower plate.

10. The waveguide alignment system of claim 1 , further comprising a plurality of mounting screws that attach the electronic testing equipment component to the upper plate.

11. The waveguide alignment system of claim 1 , wherein the electronic testing equipment component is an extension component of a network analyzer.

12. The waveguide alignment system of claim 1 , wherein the waveguide component comprises a waveguide section.

13. The waveguide alignment system of claim 12 , wherein the waveguide section of the waveguide component is configured to connect to a corresponding waveguide section of the device under test.

14. The waveguide alignment system of claim 13 , wherein the device under test comprises an antenna, amplifier, frequency converter, switch, attenuator, filter, or oscillator.

15. The waveguide alignment system of claim 1 , wherein the electronic testing equipment component is connected to a network analyzer.

16. The waveguide alignment system of claim 15 , wherein the network analyzer is configured to perform measurements on a device under test in a millimeter wave or higher electromagnetic frequency range.

17. The waveguide alignment system of claim 1 , wherein the upper plate includes an opening with an opening size that allows passage through the opening of a shank and threads of a screw but not a head of the screw.

18. A method, comprising:

aligning a device under test in a waveguide alignment system, comprising:

a base component, wherein the base component includes a rail;

a lower plate coupled to the base component; and

an upper plate coupled to the lower plate, wherein the upper plate is configured to attach to an electronic testing equipment component, the electronic testing equipment component is coupled to a waveguide component comprising one or more alignment pins that are configured to engage a device under test; and

causing electromagnetic waves to be transmitted through the electronic testing equipment component to the device under test.

19. A waveguide alignment system, comprising:

a first apparatus, comprising:

a first base component, wherein the first base component includes a rail;

a first lower plate coupled to the first base component; and

a first upper plate coupled to the first lower plate, wherein the first upper plate is configured to attach to a first electronic testing equipment component; and

a second apparatus, comprising:

a second base component;

a second lower plate coupled to the second base component; and

a second upper plate coupled to the second lower plate, wherein the second upper plate is configured to attach to a second electronic testing equipment component; and

wherein;

the first apparatus and the second apparatus are configured to interface with a device under test; and

the first electronic testing equipment component is coupled to a first waveguide component comprising one or more alignment pins that are configured to engage a device under test.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2022
From: DOSHI, DHANRAJ VIKRAM; SHU, YONGHUI
To: SAGE MILLIMETER, INC.
Reel/Frame 061211/0804 →
Continuity (1)
Provisional Application 63322422 · Mar 22, 2022
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