IP Library Granted Patent US 11,627,024
Granted Patent B2
US 11,627,024 · App. 17/510,306 · Granted Apr 11, 2023

Wideband vector modulator phase shifter

Inventors: Kang Ning (Lawrence, NJ); Harish Krishnaswamy (New York, NY); Arun Natarajan (Corvallis, OR)
Assignee: Mixcomm, Inc.
H04L27/20H03K5/01
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Quick Facts
Patent No.
US 11,627,024
App. No.
17/510,306
Granted
Apr 11, 2023
Kind
B2
Abstract

Methods and apparatus for implementing passive wideband phase shifters are described. The phase shifters exhibit good linearity over a wide range of frequencies. Furthermore at least some features are directed to allowing the phase shifters to be implemented in some embodiments in a relatively compact manner making such embodiments well suited for supporting arrays and/or other implementations where a large number of phase shifters are to be implemented in a relatively small chip area.

Claims (31)

1. A vector modulator based phase shifter comprising:

an In-phase and Quadrature phase (IQ) signal generator including a radio frequency (RF) signal input, an in-phase (I) signal output and a quadrature (Q) signal output;

a combined signal attenuator and sign flip module having an in-phase (I) signal input coupled to the I signal output of the IQ signal generator and having a quadrature (Q) signal input coupled to a quadrature (Q) signal output of the IQ signal generator, said combined signal attenuator and sign flip module including a first output coupled to said I signal input of the combined signal attenuator and sign flip module by a first attenuator and a first sign flip circuit arranged in series and further including a second output coupled to said Q signal input of the combined signal attenuator and sign flip module by a second attenuator and a second sign flip circuit; and

a signal combiner including a first RF signal input and a second RF signal input coupled to the first and second signal outputs of said combined signal attenuator and sign flip module and having an RF signal output which serves as an output of the vector modulator based phase shifter; and

wherein the vector modulator based phase shifter is a passive device which applies signal attenuation without applying any positive signal gain to signals passing through the vector modulator based phase shifter; and

wherein the vector modulator based phase shifter is a bidirectional device with the RF signal output operating as a RF signal input when a RF signal is applied to the RF signal output and with the RF signal input operating as a signal output when a RF signal is applied to the RF signal output.

2. The vector modulator based phase shifter of claim 1 , wherein the vector modulator based phase shifter is a wideband device.

3. The vector modulator based phase shifter of claim 1 , wherein the vector modulator based phase shifter is a wideband device supporting a frequency range from 24 GHz to 29.5 GHz.

4. The vector modulator based phase shifter of claim 1 ,

wherein the first attenuator precedes said first sign flip circuit in a series connection extending between the I signal input of the combined signal attenuator and sign flip module and the first output of the combined signal attenuator and sign flip module; and

wherein the second attenuator precedes said second sign flip circuit in a series connection extending between the Q signal input of the combined signal attenuator and sign flip module and the second output of the combined signal attenuator and sign flip module.

5. The vector modulator based phase shifter of claim 1 ,

wherein the first attenuator follows said first sign flip circuit in a series connection extending between the I signal input of the combined signal attenuator and sign flip module and the first output of the combined signal attenuator and sign flip module; and

wherein the second attenuator follows said second sign flip circuit in a series connection extending between the Q signal input of the combined signal attenuator and sign flip module and the second output of the combined signal attenuator and sign flip module.

6. The vector modulator based phase shifter of claim 1 ,

wherein the first sign flip circuit includes a first transformer and a first set of four switches, control inputs of the first four switches being coupled to a common sign flip control signal input; and

wherein the second sign flip circuit includes a second transformer and a second set of four switches, control inputs of the four switches of the second set being coupled to a common sign flip control signal input of the second sign flip circuit.

7. A vector modulator based phase shifter comprising:

an In-phase and Quadrature phase (IQ) signal generator including a radio frequency (RF) signal input, an in-phase (I) signal output and a quadrature (Q) signal output;

a combined signal attenuator and sign flip module having an in-phase (I) signal input coupled to the I signal output of the IQ signal generator and having a quadrature (Q) signal input coupled to a quadrature (Q) signal output of the IQ signal generator, said combined signal attenuator and sign flip module including a first output coupled to said I signal input of the combined signal attenuator and sign flip module by a first attenuator and a first sign flip circuit arranged in series and further including a second output coupled to said Q signal input of the combined signal attenuator and sign flip module by a second attenuator and a second sign flip circuit; and

a signal combiner including a first RF signal input and a second RF signal input coupled to the first and second signal outputs of said combined signal attenuator and sign flip module and having an RF signal output which serves as an output of the vector modulator based phase shifter; and

wherein the vector modulator based phase shifter is a passive device which applies signal attenuation without applying any positive signal gain to signals passing through the vector modulator based phase shifter; and

wherein the signal combiner is implemented as a wideband coupler that includes a first transmission line, a second transmission line, and a resistor.

8. The vector modulator based phase shifter of claim 7 ,

wherein the first input of the signal combiner is coupled to a first side of the resistor and a first side of the first transmission line and wherein a second side of the first transmission line is coupled to the output of the vector modulator based phase shifter; and

wherein the second input of the signal combiner is coupled to a second side of the resistor and a first side of the second transmission line and wherein a second side of the second transmission line is coupled to the output of the vector modulator based phase shifter.

9. The vector modulator based phase shifter of claim 8 , wherein said first attenuator is implemented as a first series of controllable attenuators which have independent control inputs.

10. The vector modulator based phase shifter of claim 9 , wherein said first series of controllable attenuators includes a series of at least three attenuators, said series of at least 3 attenuators including a first attenuator, a second attenuator and a third attenuator each of the first, second and third attenuators including at least one transistor having a first terminal coupled to a resistor included in the attenuator, a control input coupled to the control input of the attenuator in which the transistor is located and a third terminal coupled to ground.

11. The vector modulator based phase shifter of claim 10 , wherein the at least one transistor is a N-type MOSFET.

12. The vector modulator based phase shifter of claim 8 ,

wherein the first sign flip circuit is implemented using a wideband coupler having first and second pairs of terminals, the first terminal of the first pair of terminals serving as an input and the second terminal of the first pair of terminals serving as an output of the first sign flip circuit, the first terminal of the second pair of terminals being coupled to a first switch to ground or a high impendence depending on the position of the first switch, the second terminal of the second pair of terminals being coupled by a second switch to ground or a high impendence depending on the position of the second switch, said first and second switches being controlled by a control signal supplied to said first sign flip circuit.

Assignments (4)
SECURITY INTEREST Recorded Mar 5, 2026
From: SIVERS SEMICONDUCTORS, INC.
To: BOOTSTRAP EUROPE 4.0 SARL
Reel/Frame 073985/0194 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2023
From: KRISHNASWAMY, HARISH
To: MIXCOMM, INC.
Reel/Frame 062620/0840 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2022
From: NATARAJAN, ARUN
To: MIXCOMM, INC.
Reel/Frame 061651/0631 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2021
From: NING, KANG
To: MIXCOMM, INC.
Reel/Frame 058050/0658 →
Continuity (2)
Provisional Application 63106174 · Oct 27, 2020
Related Publication 20220131726A1 · Apr 28, 2022