Amplifier circuit arrangement and electronic device

US2023370034A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2023370034-A1
Application numberUS-202318303781-A
CountryUS
Kind codeA1
Filing dateApr 20, 2023
Priority dateMay 12, 2022
Publication dateNov 16, 2023
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An amplifier circuit arrangement for amplifying at least one input signal to an output signal for delivery to a load. The amplifier circuit arrangement includes at least one four-port hybrid coupler, a main amplifier having an input terminal for receiving a first input signal and coupled to a first port of the hybrid coupler, an auxiliary amplifier having an input terminal for receiving a second input signal and coupled to the second port of the hybrid coupler, a negative resistance amplifier circuit coupled to the third port of the hybrid coupler. The negative resistance amplifier circuit receives a signal from the hybrid coupler via the third port and returns an amplified signal back to the third port of the hybrid coupler. At least one of the auxiliary amplifier and negative resistance amplifier circuit selectively operates in combination with the main amplifier circuit.

First claim

Opening claim text (preview).

What we claim is: 1 . An amplifier circuit arrangement for amplifying at least one input signal to an output signal for delivery to a load, the amplifier circuit arrangement comprising: at least one four-port hybrid coupler, a main amplifier having an input terminal for receiving a first input signal and being coupled to a first port of the hybrid coupler, an auxiliary amplifier having an input terminal for receiving a second input signal and being coupled to the second port of the hybrid coupler, a negative resistance amplifier circuit being coupled to the third port of the hybrid coupler and having a reflection coefficient greater than or equal to 1, wherein the negative resistance amplifier circuit is configured to receive a signal from the hybrid coupler via the third port and to return an amplified signal thereof back to the third port of the hybrid coupler, wherein at least one of the auxiliary amplifier and the negative resistance amplifier circuit being selectively operable to operate in combination with the main amplifier circuit. 2 . The amplifier circuit arrangement of claim 1 , further comprising an output terminal connected to the fourth port for providing the output signal and for coupling the amplifier circuit arrangement to the load. 3 . The amplifier circuit arrangement of claim 1 , wherein the third port is an isolated port of the hybrid coupler. 4 . The amplifier circuit arrangement of claim 1 , wherein the negative resistance amplifier circuit comprises a first and a second terminal, wherein the first terminal acts as well as input and output terminal of the negative resistance amplifier circuit and wherein the second terminal is coupled to a reference voltage. 5 . The amplifier circuit arrangement of claim 1 , wherein the negative resistance amplifier circuit comprises a RF reflection amplifier. 6 . The amplifier circuit arrangement of claim 1 , wherein the negative resistance amplifier circuit comprises at least one IMPATT diode. 7 . The amplifier circuit arrangement of claim 1 , wherein the negative resistance amplifier circuit comprises at least one circulator circuit that is connected to an output of a reflection amplifier or another circulator circuit. 8 . The amplifier circuit arrangement of claim 7 , comprising a plurality of circulators and reflection amplifier that are connected in a Daisy chain configuration. 9 . The amplifier circuit arrangement of claim 1 , further comprising a power splitter configured to split a received input signal into the first input signal and the second input signal and to feed the splitted first and second input signals to the respective input terminals of the main amplifier and auxiliary amplifier, respectively. 10 . The amplifier circuit arrangement of claim 9 , wherein the power splitter is an uneven 3-way Wilkinson splitter. 11 . The amplifier circuit arrangement of claim 1 , wherein the hybrid coupler comprises at least one of: a Branch-line coupler, a lumped elements coupler, a coupled-line coupler, a Lange coupler. 12 . The amplifier circuit arrangement of claim 1 , wherein the hybrid coupler is a quadrature coupler. 13 . The amplifier circuit arrangement of claim 1 , wherein the hybrid coupler is a ring hybrid coupler. 14 . The amplifier circuit arrangement of claim 1 , further comprising at least one matching network, wherein each matching network is coupled to a respective one of the four ports of the hybrid coupler in order to perform impedance transformation, wherein at least one of the matching networks comprises a transmission line or a lumped element. 15 . The amplifier circuit arrangement of claim 1 , wherein a characteristic impedance of the hybrid coupler is configured to match a loading impedance of the load. 16 . The amplifier circuit arrangement of claim 1 , further comprising a sharpening filter coupled between the negative resistance amplifier and the third port. 17 . The amplifier circuit arrangement of claim 1 , wherein the negative resistance amplifier comprises a control terminal for receiving a control signal and wherein the negative resistance amplifier is configured such to set a predetermined magnitude of the reflection coefficient depending on the received control signal. 18 . The amplifier circuit arrangement of claim 1 , wherein the gain of the negative resistance amplifier is below 3 dB and in particular in the range of 1 dB or below. 19 . An electronic device comprising an amplifier circuit arrangement for amplifying at least one input signal to an output signal for delivery to a load, the amplifier circuit arrangement comprising: at least one four-port hybrid coupler, a main amplifier having an input terminal for receiving a first input signal and being coupled to a first port of the hybrid coupler, an auxiliary amplifier having an input terminal for receiving a second input signal and being coupled to the second port of the hybrid coupler, a negative resistance amplifier circuit being coupled to the third port of the hybrid coupler, wherein the negative resistance amplifier circuit is configured to receive a signal from the hybrid coupler via the third port and to return an amplified signal thereof back to the third port of the hybrid coupler; wherein at least one of the auxiliary amplifier and the negative resistance amplifier circuit being selectively operable to operate in combination with the main amplifier circuit. 20 . The electronic device of claim 19 , wherein the electronic device comprises at least on one of: a radio transmitter, a TV transmitter, a radio base station, a bargaining chip, a broadband amplifier.

Assignees

Inventors

Classifications

  • H03F3/604Primary

    using FET's · CPC title

  • H03F1/0288Primary

    using a main and one or several auxiliary peaking amplifiers whereby the load is connected to the main amplifier using an impedance inverter, e.g. Doherty amplifiers · CPC title

  • H03F3/245Primary

    with semiconductor devices only · CPC title

  • using inductive elements · CPC title

  • A hybrid coupler being used as coupling circuit between stages of an amplifier circuit · CPC title

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What does patent US2023370034A1 cover?
An amplifier circuit arrangement for amplifying at least one input signal to an output signal for delivery to a load. The amplifier circuit arrangement includes at least one four-port hybrid coupler, a main amplifier having an input terminal for receiving a first input signal and coupled to a first port of the hybrid coupler, an auxiliary amplifier having an input terminal for receiving a secon…
Who is the assignee on this patent?
Rohde & Schwarz
What technology area does this patent fall under?
Primary CPC classification H03F3/604. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Nov 16 2023 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).