IP Library Granted Patent US 8,912,846
Granted Patent B2
US 8,912,846 · App. 13/190,063 · Granted Dec 16, 2014

Doherty amplifier arrangement

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Quick Facts
Patent No.
US 8,912,846
App. No.
13/190,063
Granted
Dec 16, 2014
Kind
B2
Abstract

A Doherty amplifier ( 1 ) is described which comprises an input terminal ( 102 ) for receiving an input signal ( 101 ) and an output terminal ( 103 ) for providing an amplified signal ( 104 ) of the input signal ( 101 ). The Doherty amplifier ( 1 ) comprises a carrier amplifier stage ( 300 ) with a first signal input ( 311 ) and a second signal input ( 312 ) and a peak amplifier stage ( 400 ) with a third signal input ( 411 ) and a fourth signal input ( 421 ). A signal splitter ( 200 ) splits and delays the input signal ( 101 ) so that the signal at the first signal input ( 311 ) and the signal at the second signal input ( 321 ) are 180° apart in phase and that the signal at the third signal input ( 421 ) and the fourth signal input ( 431 ) are also 180° apart in phase.

Claims (71)

1. A Doherty amplifier arrangement having an input terminal for receiving an input signal and having at least one output terminal for providing an amplified signal of the input signal, further comprising:

a signal splitter for splitting the input signal into a first signal component, a second signal component that is substantially 90° apart in phase in relation to the first signal component, a third signal component that is substantially 180° apart in phase in relation to the first signal component and a fourth signal component, that is substantially 270° apart in phase in relation to the first signal component,

a carrier amplifier comprising a first carrier amplifier input, a second carrier amplifier input, a first carrier amplifier output for providing a first carrier amplifier output signal, and a second carrier amplifier output for providing a second carrier amplifier output signal,

a peak amplifier comprising a first peak amplifier input, a second peak amplifier input, a first peak amplifier output for providing a first peak amplifier output signal, and a second peak amplifier output for providing a second peak amplifier output signal

a signal combiner for combining the first carrier amplifier output signal, the second carrier amplifier output signal, the first peak amplifier output signal, and the second peak amplifier output signal in phase, whereby the signal combiner comprises a first inductor with a first inductor terminal and a second inductor terminal, a first capacitor with a first capacitor terminal and a second capacitor terminal, a second inductor with a third inductor terminal and a fourth inductor terminal, a second capacitor with a third capacitor terminal and a fourth capacitor terminal wherein

the second inductor terminal is connected to the first capacitor terminal,

the second capacitor terminal is connected to the third inductor terminal, the fourth inductor terminal is connected to the third capacitor terminal,

the fourth capacitor terminal is connected to the first inductor terminal.

2. The amplifier arrangement according to claim 1 , wherein

the carrier amplifier is a first differential amplifier comprising

a first non-inverting input that corresponds to the first carrier amplifier input,

a first inverting input that corresponds to the second carrier amplifier input,

a first non-inverting output that corresponds to the first carrier amplifier output,

a first inverting output that corresponds to the second carrier amplifier output;

the peak amplifier is a second differential amplifier comprising

a second non-inverting input that corresponds to the first peak amplifier input,

a second inverting input that corresponds to the second peak amplifier input,

a second non-inverting output that corresponds to the first peak amplifier output,

a second inverting output that corresponds to the second peak amplifier output.

3. The amplifier arrangement according to claim 1 , wherein

the carrier amplifier comprises a first carrier amplifier device providing a first carrier amplifier output and the carrier amplifier further comprises a second carrier amplifier device providing a second carrier amplifier output

the peak amplifier comprises a first peak amplifier device providing a first peak amplifier output and the peak amplifier further comprises a second peak amplifier device, providing a second peak amplifier output.

4. The amplifier arrangement according to claim 1 , comprising a differential antenna with a first antenna input and a second antenna input whereby the first antenna input is connected to the first capacitor terminal and the second antenna input is connected to the third capacitor terminal.

5. The amplifier arrangement according to claim 1 further comprising a 180° -combiner with a first 180° -combiner input and a second 180° -combiner input whereby the first 180° -combiner input is connected to the first capacitor terminal and the second 180° -combiner input is connected to the third capacitor terminal.

6. The amplifier arrangement according to claim 5 wherein the 180° -combiner is a 180° -hybrid coupler or a balun.

7. The Doherty amplifier according to claim 6 wherein a signal combiner balun comprises a first signal combiner balun input, a second combiner balun input and a signal combiner balun output, wherein

the first signal combiner balun input is connected to the first capacitor terminal and the second combiner balun input is connected to the third capacitor terminal.

8. The Doherty amplifier according to claim 6 wherein the balun is implemented as a impedance transformer with a differential impedance transformer input and a single-ended impedance transformer output.

9. A method for amplifying a radio signal by a Doherty amplifier, the method comprises

splitting the radio signal into a first signal component, a second signal component that is substantially 90° apart in phase in relation to the first signal component, a third signal component that is substantially 180° apart in phase in relation to the first signal component and a fourth signal component, that is substantially 270° apart in phase in relation to the first signal component,

amplifying the first signal component by a carrier amplifier providing a first amplified carrier signal

amplifying the third signal component by the carrier amplifier providing a second amplified carrier signal

amplifying the second signal component by a peak amplifier providing a first amplified peak signal

amplifying the fourth signal component providing a second amplified peak signal

combining the first amplified carrier signal, the second amplified carrier signal, the first amplified peak signal, and the second amplified peak signal in-phase by a circular arrangement of a first inductor, a first capacitor, a second inductor, and a second capacitor.

10. A chip set comprising a Doherty amplifier arrangement having an input terminal for receiving an input signal and having at least one output terminal for providing an amplified signal of the input signal, further comprising:

a signal splitter for splitting the input signal into a first signal component, a second signal component that is substantially 90° apart in phase in relation to the first signal component, a third signal component that is substantially 180° apart in phase in relation to the first signal component and a fourth signal component, that is substantially 270° apart in phase in relation to the first signal component,

a carrier amplifier comprising a first carrier amplifier input, a second carrier amplifier input, a first carrier amplifier output for providing a first carrier amplifier output signal, and a second carrier amplifier output for providing a second carrier amplifier output signal,

a peak amplifier comprising a first peak amplifier input, a second peak amplifier input, a first peak amplifier output for providing a first peak amplifier output signal, and a second peak amplifier output for providing a second peak amplifier output signal

a signal combiner for combining the first carrier amplifier output signal, the second carrier amplifier output signal, the first peak amplifier output signal, and the second peak amplifier output signal in phase, whereby the signal combiner comprises a first inductor with a first inductor terminal and a second inductor terminal, a first capacitor with a first capacitor terminal and a second capacitor terminal, a second inductor with a third inductor terminal and a fourth inductor terminal, a second capacitor with a third capacitor terminal and a fourth capacitor terminal wherein

the second inductor terminal is connected to the first capacitor terminal,

the second capacitor terminal is connected to the third inductor terminal,

the fourth inductor terminal is connected to the third capacitor terminal,

the fourth capacitor terminal is connected to the first inductor terminal.

11. An active antenna array comprising at least one A Doherty amplifier arrangement having an input terminal for receiving an input signal and having at least one output terminal for providing an amplified signal of the input signal, further comprising:

a signal splitter for splitting the input signal into a first signal component, a second signal component that is substantially 90° apart in phase in relation to the first signal component, a third signal component that is substantially 180° apart in phase in relation to the first signal component and a fourth signal component, that is substantially 270° apart in phase in relation to the first signal component,

a carrier amplifier comprising a first carrier amplifier input, a second carrier amplifier input, a first carrier amplifier output for providing a first carrier amplifier output signal, and a second carrier amplifier output for providing a second carrier amplifier output signal,

a peak amplifier comprising a first peak amplifier input, a second peak amplifier input, a first peak amplifier output for providing a first peak amplifier output signal, and a second peak amplifier output for providing a second peak amplifier output signal

a signal combiner for combining the first carrier amplifier output signal, the second carrier amplifier output signal, the first peak amplifier output signal, and the second peak amplifier output signal in phase, whereby the signal combiner comprises a first inductor with a first inductor terminal and a second inductor terminal, a first capacitor with a first capacitor terminal and a second capacitor terminal, a second inductor with a third inductor terminal and a fourth inductor terminal, a second capacitor with a third capacitor terminal and a fourth capacitor terminal wherein

the second inductor terminal is connected to the first capacitor terminal,

the second capacitor terminal is connected to the third inductor terminal,

the fourth inductor terminal is connected to the third capacitor terminal,

the fourth capacitor terminal is connected to the first inductor terminal.

12. A method for manufacturing a Doherty amplifier arrangement, the Doherty amplifier arrangement having an input terminal for receiving an input signal and having at least one output terminal for providing an amplified signal of the input signal, further comprising:

a signal splitter for splitting the input signal into a first signal component, a second signal component that is substantially 90° apart in phase in relation to the first signal component, a third signal component that is substantially 180° apart in phase in relation to the first signal component and a fourth signal component, that is substantially 270° apart in phase in relation to the first signal component,

a carrier amplifier comprising a first carrier amplifier input, a second carrier amplifier input, a first carrier amplifier output for providing a first carrier amplifier output signal, and a second carrier amplifier output for providing a second carrier amplifier output signal,

a peak amplifier comprising a first peak amplifier input, a second peak amplifier input, a first peak amplifier output for providing a first peak amplifier output signal, and a second peak amplifier output for providing a second peak amplifier output signal

a signal combiner for combining the first carrier amplifier output signal, the second carrier amplifier output signal, the first peak amplifier output signal, and the second peak amplifier output signal in phase, whereby the signal combiner comprises a first inductor with a first inductor terminal and a second inductor terminal, a first capacitor with a first capacitor terminal and a second capacitor terminal, a second inductor with a third inductor terminal and a fourth inductor terminal, a second capacitor with a third capacitor terminal and a fourth capacitor terminal wherein

the second inductor terminal is connected to the first capacitor terminal,

the second capacitor terminal is connected to the third inductor terminal,

the fourth inductor terminal is connected to the third capacitor terminal,

the fourth capacitor terminal is connected to the first inductor terminal.

13. A computer program product comprising a non-transitory computer-usable medium having control logic stored therein for causing a computer to manufacture a Doherty amplifier arrangement, the Doherty amplifier arrangement having an input terminal for receiving an input signal and having at least one output terminal for providing an amplified signal of the input signal, further comprising:

a signal splitter for splitting the input signal into a first signal component, a second signal component that is substantially 90° apart in phase in relation to the first signal component, a third signal component that is substantially 180° apart in phase in relation to the first signal component and a fourth signal component, that is substantially 270° apart in phase in relation to the first signal component,

a carrier amplifier comprising a first carrier amplifier input, a second carrier amplifier input, a first carrier amplifier output for providing a first carrier amplifier output signal, and a second carrier amplifier output for providing a second carrier amplifier output signal,

a peak amplifier comprising a first peak amplifier input, a second peak amplifier input, a first peak amplifier output for providing a first peak amplifier output signal, and a second peak amplifier output for providing a second peak amplifier output signal

a signal combiner for combining the first carrier amplifier output signal, the second carrier amplifier output signal, the first peak amplifier output signal, and the second peak amplifier output signal in phase, whereby the signal combiner comprises a first inductor with a first inductor terminal and a second inductor terminal, a first capacitor with a first capacitor terminal and a second capacitor terminal, a second inductor with a third inductor terminal and a fourth inductor terminal, a second capacitor with a third capacitor terminal and a fourth capacitor terminal wherein

the second inductor terminal is connected to the first capacitor terminal,

the second capacitor terminal is connected to the third inductor terminal,

the fourth inductor terminal is connected to the third capacitor terminal,

the fourth capacitor terminal is connected to the first inductor terminal.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2020
From: KATHREIN SE
To: ERICSSON AB
Reel/Frame 053798/0470 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2020
From: ERICSSON AB
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 053816/0791 →
RELEASE OF SECURITY INTEREST Recorded Oct 24, 2019
From: COMMERZBANK AKTIENGESELLSCHAFT
To: KATHREIN SE; KATHREIN INTELLECTUAL PROPERTY GMBH
Reel/Frame 050817/0146 →
CONFIRMATION OF GRANT OF SECURITY INTEREST IN U.S. INTELLECTUAL PROPERTY Recorded Sep 20, 2018
From: KATHREIN SE (SUCCESSOR BY MERGER TO KATHREIN-WERKE KG)
To: COMMERZBANK AKTIENGESELLSCHAFT, AS SECURITY AGENT
Reel/Frame 047115/0550 →
MERGER AND CHANGE OF NAME Recorded Sep 19, 2018
From: KATHREIN-WERKE KG; KATHREIN SE
To: KATHREIN SE
Reel/Frame 047114/0982 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2013
From: UBIDYNE, INC.
To: KATHREIN-WERKE KG
Reel/Frame 031598/0597 →