IP Library Granted Patent US 8,427,387
Granted Patent B1
US 8,427,387 · App. 12/894,658 · Granted Apr 23, 2013

Broadband spiral transmission line phase shifting power splitter

Inventor: Michael J. Josypenko (Norwich, CT)
Assignee: The United States of America as represented by the Secretary of the Navy
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Quick Facts
Patent No.
US 8,427,387
App. No.
12/894,658
Granted
Apr 23, 2013
Kind
B1
Abstract

A broadband power splitter and phase shifter having a plurality of transmission lines, a 3 db, zero degree power splitter for splitting a signal, an open quadrifilar spiral for receiving a first signal and reflecting power, a modified, open quadrifilar spiral for receiving a second output after a delay and for reflecting power, and wherein a difference between the reflected power from the open quadrifilar spiral and the modified, open quadrifilar spiral in conjunction with a delay provides a constant phase shift over a broad range of frequencies.

Claims (33)

1. A broadband spiral transmission line phase shifting power divider device having a plurality of transmission lines, comprising:

an input for receiving a signal;

a power splitter, coupled to said input, for splitting the signal received at the input into a first output and a second output;

a directional coupler, for receiving the first output signal, and for providing a directional coupler output, said directional coupler having a coupler port;

a balun for receiving the directional coupler output from the coupler port of the directional coupler and for providing a balun output;

an open quadrifilar spiral, for receiving the balun output from the balun and for reflecting power;

a second directional coupler for receiving the second output, said second directional coupler having a second coupler port;

a delay for receiving a second directional coupler output from the second directional coupler;

a second balun for receiving a delay output from the delay;

a modified, open quadrifilar spiral, for receiving a second balun output from the second balun and for reflecting power; and

wherein a difference in reflected power between the reflected power from the open quadrifilar spiral and the delayed reflected power from the modified, open quadrifilar spiral provides an approximately constant phase shift over a broad range of frequencies.

2. The broadband spiral transmission line phase shifting power splitter device according to claim 1 , wherein the modified, open quadrifilar has a first transmission line and a second transmission line, each of the transmission lines has two radially opposite filars, and wherein both of the filars of the first transmission line and both of the filars of the second transmission line overlap at their ends with the adjacent filar, with a layer of dielectric material disposed between the overlapping sections of said filars such that they do not make physical contact.

3. The broadband spiral transmission line phase shifting power splitter device according to claim 2 , wherein the open quadrifilar has a first transmission line and a second transmission line, each of the transmission lines has two filars, wherein only one of the two transmission lines of each of the two quadrifilar spirals is fed.

4. The broadband spiral transmission line phase shifting power splitter device according to claim 3 , wherein the reflected power from the open quadrifilar spiral is received by the directional coupler and the reflected power from the modified, open quadrifilar spiral is received by the second directional coupler.

5. The broadband spiral transmission line phase shifting power splitter device according to claim 4 , wherein the reflected power from the modified, open quadrifilar spiral passes through a delay before being received by the second directional coupler.

6. The broadband spiral transmission line phase shifting power splitter device according to claim 5 , wherein a portion of the reflected power from the open quadrifilar spiral is received by the coupled port of the directional coupler and a portion of the reflected power from the modified, open quadrifilar spiral is received by the second coupled port of the second directional coupler.

7. The broadband spiral transmission line phase shifting power splitter device according to claim 6 , wherein the reflected power from the open quadrifilar spiral passes through the balun before being received by the directional coupler and the reflected power from the modified, open quadrifilar spiral passes through the second balun before being received by the second directional coupler.

8. A broadband spiral transmission line phase shifting power divider device having a plurality of transmission lines, comprising:

an input for receiving a signal;

a power splitter, coupled to said input, for splitting the signal received at the input into a first output and a second output;

a first circulator, for receiving the first output signal, and for providing a circulator output, said first circulator having a first reflection transfer port;

a balun for receiving the first circulator output from the first reflection transfer port of the first circulator and for providing a balun output;

an open quadrifilar spiral, for receiving the balun output from the balun and for reflecting

a second circulator for receiving the second output and for providing a circulator output, said second circulator having a second reflection transfer port;

a delay for receiving a second circulator output from the second circulator;

a second balun for receiving a delay output from the delay;

a modified, open quadrifilar spiral, for receiving a second balun output from the second balun and for reflecting power; and

wherein a difference in reflected power between the reflected power from the open quadrifilar spiral and the delayed reflected power from the modified, open quadrifilar spiral provides an approximately constant phase shift over a broad range of frequencies.

9. The broadband spiral transmission line phase shifting power splitter device according to claim 8 , wherein the modified, open quadrifilar has a first transmission line and a second transmission line, each of the transmission lines has two radially opposite filars, and wherein both of the filars of the first transmission line and both of the filars of the second transmission line overlap at their ends with the adjacent filar, with a layer of dielectric material disposed between the overlapping sections of said filars such that they do not make physical contact.

10. The broadband spiral transmission line phase shifting power splitter device according to claim 9 , wherein the open quadrifilar has a first transmission line and a second transmission line, each of the transmission lines has two filars, wherein only one of the two transmission lines of each of the two quadrifilar spirals is fed.

11. The broadband spiral transmission line phase shifting power splitter device according to claim 10 , wherein the reflected power from the open quadrifilar spiral is received by the first circulator so that all of the reflected power from the open quadrifilar spiral ends up at the first reflection transfer port and the reflected power from the modified, open quadrifilar spiral is received by the second circulator so that all of the reflected power from the modified, open quadrifilar spiral ends up at the second reflection transfer port.

12. The broadband spiral transmission line phase shifting power splitter device according to claim 11 , wherein the reflected power from the modified, open quadrifilar spiral passes through a delay before being received by the second circulator.

13. The broadband spiral transmission line phase shifting power splitter device according to claim 12 , wherein the reflected power from the open quadrifilar spiral passes through the balun before being received by the first circulator and the reflected power from the modified, open quadrifilar spiral passes through the second balun before being received by the second circulator.

Assignments (1)
CONFIRMATORY LICENSE Recorded Oct 15, 2010
From: JOSYPENKO, MICHAEL J.
To: UNITED STATES OF AMERICA, THE
Reel/Frame 025147/0544 →