IP Library Patent Application 17047965
Patent Application
App. No. 17/047,965

DISTRIBUTED VARACTOR NETWORK WITH EXPANDED TUNING RANGE

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Quick Facts
Patent No.
US None
App. No.
17/047,965
Abstract

Examples disclosed herein relate to a phase shift network system including a phase shift network having a plurality of distributed varactor networks, each distributed varactor network capable of providing a phase shift range in a millimeter wave spectrum, and a plurality of switches coupled to the phase shift network, each switch to activate a distributed varactor network from the plurality of distributed varactor networks to generate a given phase shift within the phase shift range.

Claims (32)

1 . A phase shift network system, comprising:

a phase shift network comprising a plurality of distributed varactor networks, each distributed varactor network capable of providing a phase shift range in a millimeter wave spectrum; and

a plurality of switches coupled to the phase shift network, each switch to activate a distributed varactor network from the plurality of distributed varactor networks to generate a given phase shift within the phase shift range.

2 . The phase shift network system of claim 1 , wherein the plurality of distributed varactor networks comprises three distributed varactor networks to provide a phase shift range of up to 360°, each of the three distributed varactor networks to achieve a phase shift of up to 120°.

3 . The phase shift network system of claim 1 , wherein each distributed varactor network from the plurality of distributed varactor networks comprises:

a first circuit section comprising a first and a second varactor coupled to a hybrid, 90° coupler; and

a second circuit section coupled to the first circuit section and comprising a third and a fourth varactor coupled to a hybrid, 45° coupler.

4 . The phase shift network system of claim 3 , wherein the first, second, third and fourth varactors comprise GaAs varactors operating in a millimeter wave spectrum.

5 . The phase shift network system of claim 3 , wherein the first, second, third and fourth varactors comprise GaAs varactors operating in a millimeter wave spectrum.

6 . The phase shift network system of claim 3 , wherein the first and the second varactor coupled to the hybrid, 90° coupler form an LC network.

7 . The phase shift network system of claim 3 , wherein the third and the fourth varactor coupled to the hybrid, 45° coupler form an LC network.

8 . A distributed varactor network, comprising:

a first circuit section comprising a first and a second varactor coupled to a hybrid, 90° coupler; and

a second circuit section coupled to the first circuit section and comprising a third and a fourth varactor coupled to a hybrid, 45° coupler.

9 . The distributed varactor network of claim 8 , wherein the first, second, third and fourth varactors are GaAs varactors operating in a millimeter wave spectrum.

10 . The distributed varactor network of claim 8 , wherein the first circuit section coupled to the second circuit section achieve a phase shift of up to 120°.

11 . A meta-structure antenna system, comprising:

an antenna controller for generating a transmission signal with controlled characteristics; and

a radiating structure to generate a radiating signal from the transmission signal, comprising:

a feed distribution module comprising a reactance control element, the reactance control element comprising a phase shift network system to generate a plurality of phase shifts within a phase shift range; and

a radiating array structure composed of an array of meta-structure cells coupled to the feed distribution module and the antenna controller, each meta-structure cell to generate a radiating signal at a given phase shift from the plurality of phase shifts.

12 . The meta-structure antenna system of claim 11 , wherein the phase shift network system comprises a plurality of distributed varactor networks and a plurality of switches, each switch to activate a distributed varactor network to generate the given phase shift within the phase range.

13 . The meta-structure antenna system of claim 12 , wherein each distributed varactor network comprises:

a first circuit section comprising a first and a second varactor coupled to a hybrid, 90° coupler; and

a second circuit section coupled to the first circuit section and comprising a third and a fourth varactor coupled to a hybrid, 45° coupler.

14 . The meta-structure antenna system of claim 13 , wherein the first, second, third and fourth varactors comprise GaAs varactors operating in a millimeter wave spectrum.

15 . The meta-structure antenna system of claim 13 , wherein the first, second, third and fourth varactors comprise Si varactors operating in a millimeter wave spectrum.

16 . The meta-structure antenna system of claim 13 , wherein the first circuit section forms a first LC network and the second circuit section forms a second LC network.

17 . The meta-structure antenna system of claim 13 , wherein the plurality of distributed varactor networks comprises three distributed varactor networks, each of the three distributed varactor networks to generate phase shifts within a 120° phase range.

18 . The meta-structure antenna system of claim 12 , wherein the meta-structure cells comprise metamaterial cells.

19 . The meta-structure antenna system of claim 12 , further comprising an AI module for object detection and identification in echoes generated from the radiating signal.

20 . The meta-structure antenna system of claim 18 , further comprising an interface to sensor fusion module coupled to the AI module.

Assignments (2)
SECURITY INTEREST Recorded Mar 21, 2022
From: METAWAVE CORPORATION
To: BDCM A2 LLC
Reel/Frame 059454/0555 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2021
From: DANI, ASMITA
To: METAWAVE CORPORATION
Reel/Frame 055732/0100 →