Claims
- 1. A phase shifter comprising:
- a plurality of transistors, each transistor including a control electrode fed by a control signal, an input electrode, a reference electrode connected to a reference potential with said control signal having a voltage level with respect to said reference potential, and an output electrode;
- a plurality of transmission lines, each one of said lines having a predetermined electrical pathlength and being electrically coupled between a first one of the input and output electrodes of a corresponding one of the plurality of transistors, and a corresponding one of input and output ports of the phase shifter, to provide an output signal having a predetermined voltage level with respect to the reference potential and having a predetermined phase shift relative to an input signal fed to the input port, said input signal having a predetermined voltage level with respect to said reference potential with said phase shift being related to the predetermined electrical pathlength of a selected one of said transmission lines, with said selected transmission line being selected in accordance with the voltage level of the control signal applied to the control electrode of each transistor.
- 2. The phase shifter as recited in claim 1 wherein the phase shifter provides gain to the output signal.
- 3. A phase shifter comprising:
- a substrate;
- a plurality of field effect transistors formed on the substrate, each transistor including a first control electrode fed by one of a plurality of control signals, a second control electrode fed by an input signal, and an output electrode; and
- a coupling means, formed on the substrate, electrically coupling the output electrode of each field effect transistor to an output port, for producing in response to the control signals an output signal having a predetermined phase shift relative to an input signal fed to the input port.
- 4. A phase shifter as recited in claim 3 wherein the coupling means includes a microwave transmission line formed on the substrate.
- 5. A phase shifter as recited in claim 3 wherein the coupling means further comprises a plurality of microwave transmission lines, each of such microwave transmission lines having a first end being electrically connected to a corresponding one of the output electrodes of the plurality of transistors and a second and electrically connected to the output port.
- 6. A phase shifter as recited in claim 5 wherein the length of each of such microwave transmission lines is selected to provide an electrical pathlength difference corresponding to a desired phase shift increment.
- 7. The phase shifter as recited in claim 3 wherein the phase shifter provides gain to the output signal.
- 8. A phase shifter comprising:
- a pair of field effect transistors each one of the field effect transistors including a control gate electrode, an input gate electrode, and a drain electrode;
- wherein the input gate electrodes of the pair of field effect transistors are electrically connected to an input signal source, the control gate electrodes of the pair of field effect transistors are fed by control signal; and
- a pair of transmission lines electrically coupled between the drain electrodes of each field effect transistor and a common junction, to provide a pair of signal paths, each having a predetermined electrical pathlength and for producing an output signal having a predetermined phase shift relative to the input signal, such phase shift being related to the predetermined electrical pathlength of a selected one of said paths, said paths being selected in accordance with the control signals fed to the control gate electrodes of such field effect transistors.
- 9. A phase shifter as recited in claim 8 wherein the coupling means includes a microwave frequency transmission line.
- 10. The phase shifter as recited in claim 8 wherein the phase shifter provides gain to the output signal.
- 11. A phase shifter comprising:
- a plurality of field effect transistors each including a first gate electrode, a second gate electrode, and a drain electrode;
- wherein the first gate electrode of each field effect transistor is electrically connected to a common input signal source, the second gate electrode of each field effect transistor is fed by a control signal; and
- a coupling means electrically cascade interconnecting the drain electrode of each field effect transistor for providing a predetermined electrical pathlength between each one of the drain electrodes and for producing in response to the control signals, an output signal at an output port having a predetermined phase shift related to the sum of the electrical pathlengths between a selected one of said drain electrodes and an output port.
- 12. The phase shifter as recited in claim 11 wherein the selected drain electrode is determined by the control signal fed to the second gate electrode of each FET.
- 13. A digitally controlled phase shifter, having an input port, an output port, and a control port, for providing a signal at the output port having a phase shifted a predetermined amount relative to the phase of a signal applied to the input port, comprising:
- a plurality of phase shift stages, each one of such stages having an input terminal and output terminal and being cascade interconnected to a corresponding one of input and output terminals of a succeeding stage between the input port and the output port; and
- wherein each stage comprises:
- a pair of transistors, each transistor comprising an input electrode, a control electrode, a reference electrode connected to a reference potential, and an output electrode; and
- a coupling means, electrically coupled between a first one of the input and output electrodes of the transistor and a corresponding one of input and output terminals of the stage, for providing an incremental phase shift to a signal applied thereto, selectively in accordance with a pair of complementary control signals fed to the control electrode of each one of the transistors, with said signals having predetermined voltage levels with respect to said reference potential.
- 14. The digitally controlled phase shifter as recited in claim 13 wherein each stage of the digitally controlled phase shifter provides gain to the output signal.
- 15. The digitally controlled phase shifter as recited in claim 13 wherein the digitally controlled phase shifter provides gain to the output signal.
- 16. A phase shifter for producing an output signal having one of a plurality of predetermined discrete phase shifts relative to an input signal selectively in accordance with a corresponding one of a plurality of control signals comprising:
- a plurality of transistors, each transistor including a first control electrode fed by one of said control signals, a second control electrode fed by the input signal, a reference electrode connected to a reference potential, and an output electrode; and
- a plurality of transmission lines with a corresponding one of each of such lines being electrically coupled between a first one of the input and output electrodes of a corresponding one of the plurality of transistors and to a corresponding first one of input and output ports of the phase shifter, each one of said transmission lines having an electrical length corresponding to a corresponding one of the plurality of discrete phase shifts for producing,in response to the control signals, the output signal having one of the predetermined phase shifts.
- 17. The phase shifter as recited in claim 16 wherein the phase shifter provides a predetermined amount of gain to the output signal.
- 18. A phase shifter for producing an output signal having one of a plurality of predetermined discrete phase shifts relative to an input signal selectively in accordance with a corresponding one of a plurality of control signals comprising:
- a substrate;
- a plurality of field effect transistors formed on the substrate, each transistor including a first control electrode fed by one of said control signals, a second control electrode fed by the input signal, and an output electrode; and
- a plurality of transmission lines, formed on the substrate, with a corresponding one of each of such lines being electrically coupled between the output electrode of each field effect transistor and an output port of the phase shifter each one of said transmission lines having an electrical length corresponding to a corresponding one of the plurality of discrete phase shifts for producing in response to the control signals the output signal having one of the predetermined discrete phase shifts.
- 19. A phase shifter as recited in claim 18 wherein the transmission lines formed on the substrate are microstrip transmission lines having a strip conductor portion formed on the substrate and dielectrically spaced by the substrate from a ground plane conductor.
- 20. The phase shifter as recited in claim 18 wherein the phase shifter provides a predetermined amount of gain to the output signal.
- 21. A phase shifter for producing an output signal having one of a pair of predetermined discrete phase shifts relative to an input signal selectively in accordance with a corresponding one of a pair of control signals comprising:
- a pair of field effect transistors each one of the field effect transistors including a control gate electrode fed by one of said control signals, an input gate electrode fed by the input signal, and a drain electrode; and
- a pair of transmission lines electrically coupled between the drain electrodes of each field effect transistor and a common junction, each one having an electrical length equal to a corresponding one of the pair of predetermined discrete phase shifts for producing the outut signal having one of the predetermined phase shifts, such phase shift being selected in accordance with the control signals fed to the control gate electrode of such field effect transistors.
- 22. The phase shifter as recited in claim 21 wherein each stage provides a predetermined amount of gain to the output signal.
- 23. A digitally controlled phase shifter, having an input port, an output port, and being adapted to be fed by a plurality of pairs of complementary control signals, for providing an output signal at the output port having a phase shifted a predetermined amount relative to the phase of an input signal applied to the input port, comprising:
- a plurality of phase shift stages, each one of such stages being cascade interconnected to a succeeding stage between the input port and the output port, each stage providing a selected one of a pair of discrete phase shifts and a predetermined gain to a signal propagating therethrough in response to a corresponding one of the plurality of pairs of complementary control signals with the phase shift of the output signal at the output port of the digitally controlled phase shifter being a combination of the individual selected discrete phase shifts of each stage and the gain of said output signal relative to said input signal is a combination of the gain provided by each one of said stages; and
- wherein each stage comprises:
- a pair of transistors, each transistor including a first control electrode fed by one of said control signals, a second control electrode fed by the input signal, a reference electrode connected to a reference potential, and an output electrode; and
- a pair of transmission lines electrically coupled between a first one of the input and output electrodes of the transistor and a corresponding first one of the input and output ports of such stage, each having an electrical pathlength selected in accordance with a corresponding one of the pair of discrete phase shifts.
- 24. The phase shifter as recited in claim 23 wherein the length of each one of such transmission lines is selected to provide an electrical pathlength difference corresponding to a predetermined phase shift increment.
Parent Case Info
This application is a continuation of application Ser. No. 353,117 filed Mar. 1, 1982, now abandoned.
Government Interests
The Government has rights in this invention pursuant to Contract No. E33615-79-C-1923 awarded by the U.S. Air Force.
US Referenced Citations (8)
Continuations (1)
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Number |
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353117 |
Mar 1982 |
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