IP Library Granted Patent US 10,637,525
Granted Patent B2
US 10,637,525 · App. 16/480,587 · Granted Apr 28, 2020

Wireless device and wireless communication method

Inventors: Terufumi Nagano (Tokyo, JP); Hideaki Shimizu (Tokyo, JP)
Assignee: HITACHI KOKUSAI ELECTRIC INC.
H04B1/401H03F1/32H04B1/006H04B1/406H04B1/48H04B1/50H04B7/2621H04B7/2643
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Quick Facts
Patent No.
US 10,637,525
App. No.
16/480,587
Granted
Apr 28, 2020
Kind
B2
Abstract

There is provided a wireless device capable of supporting both of TDD and FDD wireless communications with a simple configuration. The wireless device includes a transmitter that transmits a signal of a first frequency; a DPD receiver that receives signals of the first frequency; a receiver that receives signals of a second frequency; a duplexer having a first filter having passband characteristics in the first frequency band and a second filter having passband characteristics in the second frequency band; and a circulator that splits the signal from the transmitter to output the split signals to the duplexer and the DPD receiver, and outputs a reception signal from the duplexer to the DPD receiver. The duplexer is connected to the circulator on the first filter side and to the receiver on the second filter side, and uses the DPD receiver for FDD and TDD transmission feedback and for TDD reception.

Claims (21)

1. A wireless device compatible with both FDD wireless communications in which a transmission is performed with a first frequency while a reception is performed with a second frequency and TDD wireless communications in which a transmission and a reception are performed with the first frequency, the wireless device comprising:

a transmission circuit unit configured to transmit a signal having the first frequency;

a first reception circuit unit configured to receive a signal having the first frequency;

a second reception circuit unit configured to receive a signal having the second frequency;

a branching unit connected to an antenna and having a first filter having passband characteristics in a frequency band of the first frequency and a second filter having passband characteristics in a frequency band of the second frequency; and

a path switching unit configured to split the signal from the transmission circuit unit to output the split signals to the branching unit and the first reception circuit unit and further configured to output a reception signal from the branching unit to the first reception circuit unit,

wherein the branching unit is connected to the path switching unit through the first filter and is also connected to the second reception circuit unit through the second filter, and

the branching unit uses the first reception circuit unit for a feedback of the transmission in the TDD wireless communications and the FDD wireless communications and for the reception in the TDD wireless communications.

2. The wireless device of claim 1 , wherein the first reception circuit unit includes a first front-end amplifier, a first front-end filter having passband characteristics in the frequency band of the first frequency, a first back-end filter having passband characteristics in a frequency band for distortion compensation, and a first back-end amplifier,

the second reception circuit unit includes a second front-end amplifier, a second front-end filter having passband characteristic in the frequency band of the second frequency, a second back-end filter having passband characteristics in a frequency band for the reception, and a second back-end amplifier,

the split signal obtained by splitting the signal outputted from the transmission circuit unit to the first reception circuit unit is processed by the first front-end filter and, then, is processed by the first back-end filter and the first back-end amplifier,

the received signal having the first frequency is processed by the first front-end amplifier and the first front-end filter and, then, is processed by the second back-end filter and the second back-end amplifier, and

the received signal having the second frequency is processed by the second front-end amplifier and the second front-end filter and, then, is processed by the second back-end filter and the second back-end amplifier.

3. A wireless communications method performed by a wireless device compatible with both FDD wireless communications in which a transmission is performed with a first frequency while a reception is performed with a second frequency and TDD wireless communications in which a transmission and a reception are performed with the first frequency,

wherein the wireless device includes: a transmission circuit unit configured to transmit a signal having the first frequency; a first reception circuit unit configured to receive a signal having the first frequency; a second reception circuit unit configured to receive a signal having the second frequency; a branching unit connected to an antenna and having a first filter having passband characteristics in a frequency band of the first frequency and a second filter having passband characteristics in a frequency band of the second frequency; and a path switching unit configured to split the signal from the transmission circuit unit to output the split signals to the branching unit and the first reception circuit unit and further configured to output a reception signal from the branching unit to the first reception circuit unit,

wherein the branching unit is connected to the path switching unit through the first filter and is also connected to the second reception circuit unit through the second filter, and the branching unit uses the first reception circuit unit for a feedback of the transmission in the TDD wireless communications and the FDD wireless communications and for the reception in the TDD wireless communications.

4. The wireless communications method of claim 3 , wherein the first reception circuit unit includes a first front-end amplifier, a first front-end filter having passband characteristics in the frequency band of the first frequency, a first back-end filter having passband characteristics in a frequency band for distortion compensation, and a first back-end amplifier,

the second reception circuit unit includes a second front-end amplifier, a second front-end filter having passband characteristic in the frequency band of the second frequency, a second back-end filter having passband characteristics in a frequency band for the reception, and a second back-end amplifier,

the split signal obtained by splitting the signal outputted from the transmission circuit unit to the first reception circuit unit is processed by the first front-end filter and, then, is processed by the first back-end filter and the first back-end amplifier,

the received signal having the first frequency is processed by the first front-end amplifier and the first front-end filter and, then, is processed by the second back-end filter and the second back-end amplifier, and

the received signal having the second frequency is processed by the second front-end amplifier and the second front-end filter and, then, is processed by the second back-end filter and the second back-end amplifier.

Assignments (3)
CHANGE OF ADDRESS Recorded May 15, 2025
From: HITACHI KOKUSAI ELECTRIC INC.
To: HITACHI KOKUSAI ELECTRIC INC.
Reel/Frame 071275/0058 →
CHANGE OF NAME Recorded May 15, 2025
From: HITACHI KOKUSAI ELECTRIC INC.
To: KOKUSAI DENKI ELECTRIC INC.
Reel/Frame 071275/0236 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2019
From: NAGANO, TERUFUMI; SHIMIZU, HIDEAKI
To: HITACHI KOKUSAI ELECTRIC INC.
Reel/Frame 049851/0616 →
Priority Claims (1)
JP 2017-019375 · Feb 6, 2017 · national
Continuity (1)
Related Publication 20190393922A1 · Dec 26, 2019