IP Library Granted Patent US 7,800,523
Granted Patent B2
US 7,800,523 · App. 12/361,481 · Granted Sep 21, 2010

Signal processor, control method, and wireless communication device

Assignee: Sony Corporation
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Quick Facts
Patent No.
US 7,800,523
App. No.
12/361,481
Granted
Sep 21, 2010
Kind
B2
Abstract

There is provided a signal processor with a plurality of antennas connected for transmitting and receiving wireless signals, including a plurality of analog reception processing units, AD converters, DA converters, and analog transmission processing units, wherein each of the analog reception processing units converts the wireless signal received through the antenna into an analog baseband signal and outputs the signal to the AD converter, each of the DA converters converts the digital baseband signal into analog format and outputs the signal, and each of the analog transmission processing units shifts the frequency band of the analog baseband signal output from the DA converter to the high frequency side. The signal processor further includes a transmission switch which switches among the DA converters respectively connected to the analog transmission processing units and a reception switch which switches among the AD converters respectively connected to the analog reception processing units.

Claims (56)

1. A signal processor, comprising:

a plurality of analog reception processing units;

a plurality of AD converters;

a plurality of DA converters; and

a plurality of analog transmission processing units,

wherein the signal processor is connected to a plurality of antennas for transmitting and receiving wireless signals,

each of the analog reception processing units shifts a frequency band of the wireless signal received through the connected antenna to a low frequency side to generate an analog baseband signal and outputs the analog baseband signal from an output terminal,

each of the AD converters converts the analog baseband signal generated by the connected analog reception processing unit into a digital baseband signal and outputs the digital baseband signal,

each of the DA converters converts the input digital baseband signal into an analog baseband signal and outputs the analog baseband signal, and

each of the analog transmission processing units shifts the frequency band of the analog baseband signal output from the connected DA converter to a high frequency side,

the signal processor further including:

a transmission switch which switches among the DA converters connected to the respective analog transmission processing units; and

a reception switch which switches among the AD converters connected to the respective analog reception processing units.

2. The signal processor according to claim 1 , further comprising:

a property calibration unit which calibrates a property of at least one of the analog reception processing unit, the AD converter, the DA converter, the analog transmission processing unit, and the antenna; and

a control unit which controls the transmission switch and the reception switch according to a target property to be calibrated by the property calibration unit.

3. The signal processor according to claim 2 , further comprising

a plurality of rectifiers which rectify the signals obtained by shifting the analog baseband signals to the high frequency side by the respective analog transmission processing units and which are arranged so that each outputs the rectified signal from an output terminal of the analog reception processing unit connected to the same antenna as the analog transmission processing unit, wherein

in property calibration of the first analog transmission processing unit and the first DA converter by the property calibration unit,

the control unit connects the first analog transmission processing unit and the first DA converter to the transmission switch and connects the first analog reception processing unit, connected to the same antenna as the first analog transmission processing unit, which outputs the signal rectified by the rectifier from the output terminal and the second AD converter to the reception switch, and

in property calibration of the first analog reception processing unit and the first AD converter by the property calibration unit,

the control unit connects the first analog transmission processing unit and the second DA converter to the transmission switch and connects the first analog reception processing unit which the signal obtained by shifting the analog baseband signal to the high frequency side by the first analog transmission processing unit inputs and the first AD converter to the reception switch.

4. The signal processor according to claim 3 , wherein

in the calibration of the antenna property by the property calibration unit,

as a first step,

the control unit connects the first analog transmission processing unit and the first DA converter to the transmission switch and connects the second analog reception processing unit which is connected to the second antenna for receiving the wireless signal from the first antenna connected to the first analog transmission processing unit and the second AD converter to the reception switch, and

as a second step,

the control unit connects the second analog transmission processing unit connected to the second antenna and the second DA converter to the transmission switch and connects the first analog reception processing unit which is connected to the first antenna for receiving the wireless signal transmitted from the second antenna and the first AD converter to the reception switch.

5. The signal processor according to claim 4 , wherein

the control unit

connects the first analog transmission processing unit and the first DA converter to the transmission switch during a transmission period of the wireless signal from the first antenna to another wireless communication device, and

connects the first analog reception processing unit and the first AD converter to the reception switch during a reception period of the wireless signal from another wireless communication device through the first antenna.

6. The signal processor according to claim 2 , further comprising:

a plurality of digital reception processing units which respectively convert the digital baseband signal output from the connected AD converter into a bit string;

a plurality of digital transmission processing units which respectively generate the digital baseband signal and output the signal to the connected DA converter; and

the switching unit which switches among the digital reception processing units respectively connected to the AD converters and among the digital transmission processing units respectively connected to the DA converters.

7. A control method that is carried out in a signal processor having a plurality of analog reception processing units, AD converters, DA converters, and analog transmission processing units, the signal processor being connected to a plurality of antennas for transmitting and receiving wireless signals, in which

each of the analog reception processing units shifts a frequency band of the wireless signal received by the connected antenna to a low frequency side to generate an analog baseband signal and outputs the analog baseband signal from an output terminal,

each of the AD converters converts the analog baseband signal generated by the connected analog reception processing unit into a digital baseband signal and outputs the digital baseband signal,

each of the DA converters converts the input digital baseband signal into an analog baseband signal and outputs the analog baseband signal, and

each of the analog transmission processing units shifts the frequency band of the analog baseband signal output from the connected DA converter to a high frequency side,

the method comprising:

a step of switching among the DA converters connected to the respective analog transmission processing units and switching among the AD converters connected to the respective analog reception processing units, depending on a target property for calibration.

8. A wireless communication device having a MIMO communication function, comprising:

a plurality of antennas;

a plurality of analog reception processing units;

a plurality of AD converters;

a plurality of DA converters; and

a plurality of analog transmission processing units,

wherein each of the analog reception processing units shifts a frequency band of the wireless signal received through the connected antenna to a low frequency side to generate an analog baseband signal and outputs the analog baseband signal from an output terminal,

each of the AD converters converts the analog baseband signal generated by the connected analog reception processing unit into a digital baseband signal and outputs the digital baseband signal,

each of the DA converters converts the input digital baseband signal into an analog baseband signal and outputs the analog baseband signal, and

each of the analog transmission processing units shifts the frequency band of the analog baseband signal output from the connected DA converter to a high frequency side,

the wireless communication device further including:

a transmission switch which switches among the DA converters respectively connected to the analog transmission processing units;

a reception switch which switches among the AD converters respectively connected to the analog reception processing units.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2021
From: WI-FI ONE, LLC
To: REDWOOD TECHNOLOGIES, LLC
Reel/Frame 058026/0232 →
RELEASE OF SECURITY INTEREST Recorded Nov 3, 2021
From: CORTLAND CAPITAL MARKET SERVICES LLC
To: WI-FI ONE, LLC
Reel/Frame 058014/0725 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded May 23, 2018
From: WI-FI ONE, LLC
To: CORTLAND CAPITAL MARKET SERVICES LLC, AS COLLATERAL AGENT
Reel/Frame 046222/0786 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2018
From: SONY CORPORATION
To: WI-FI ONE, LLC
Reel/Frame 045853/0047 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2009
From: TAKANO, HIROAKI; YAMAURA, TOMOYA
To: SONY CORPORATION
Reel/Frame 022207/0972 →
Priority Claims (1)
JP P2008-024458 · Feb 4, 2008 · national
Continuity (1)
Related Publication 20090219184A1 · Sep 3, 2009