IP Library Granted Patent US 7,317,412
Granted Patent B2
US 7,317,412 · App. 11/434,329 · Granted Jan 8, 2008

Techniques for biasing a radio frequency digital to analog converter

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Quick Facts
Patent No.
US 7,317,412
App. No.
11/434,329
Granted
Jan 8, 2008
Kind
B2
Abstract

Various techniques for biasing a radio frequency digital-to-analog converter are described. In one embodiment, a baseband processor may comprise a plurality of output drivers to generate a plurality of base currents for biasing a radio frequency digital-to-analog converter. The baseband processor may comprise a serial control interface to generate a programming signal for controlling a relationship among the plurality of base currents. Other embodiments are described and claimed.

Claims (40)

1. A baseband processor comprising:

a plurality of output drivers to generate a plurality of base currents for biasing a radio frequency digital-to-analog converter;

a serial control interface to generate a programming signal for controlling a relationship among said plurality of base currents; and

a plurality of tuning voltage generators to generate a plurality of tuning voltages for biasing said plurality of output drivers, each of said plurality of tuning voltage generators comprising a current multiplier to be programmed by said serial control interface.

2. The baseband processor of claim 1 , said relationship comprising a fixed ratio among said plurality of base currents.

3. A baseband processor comprising:

a plurality of output drivers to generate a plurality of base currents for biasing a radio frequency digital-to-analog converter;

a serial control interface to generate a programming signal for controlling a relationship among said plurality of base currents; and

a plurality of tuning voltage generators to generate a plurality of tuning voltages for biasing said plurality of output drivers said serial control interface to control a ratio among said plurality of tuning voltages.

4. A baseband processor comprising:

a plurality of output drivers to generate a plurality of base currents for biasing a radio frequency digital-to-analog converter;

a serial control interface to generate a programming signal for controlling a relationship among said plurality of base currents; and

a plurality of tuning voltage generators to generate a plurality of tuning voltages for biasing said plurality of output drivers, said plurality of tuning voltage generators to adjust transconductance values of said plurality of output drivers.

5. The baseband processor of claim 1 , said plurality of output drivers to receive a single power level signal to adjust said plurality of base currents.

6. The baseband processor of claim 5 , said power level signal comprising a single power control voltage.

7. A baseband processor comprising:

a plurality of output drivers to generate a plurality of base currents for biasing a radio frequency digital-to-analog converter, said plurality of output drivers to receive a single power level signal to adjust said plurality of base currents;

a serial control interface to generate a programming signal for controlling a relationship among said plurality of base currents; and

one or more analog multiplexers to receive said single power level signal.

8. The baseband processor of claim 7 , said one or more analog multiplexers to receive an amplitude signal and to scale said amplitude signal according to said single power level signal.

9. A baseband processor comprising:

a plurality of output drivers to generate a plurality of base currents for biasing a radio frequency digital-to-analog converter said plurality of output drivers to receive a single power level signal to adjust said plurality of base currents;

a serial control interface to generate a programming signal for controlling a relationship among said plurality of base currents; and

one or more filters to provide said single power level signal to said plurality of output drivers.

10. A baseband processor comprising:

a plurality of output drivers to generate a plurality of base currents for biasing a radio frequency digital-to-analog converter; and

a serial control interface to generate a programming signal for controlling a relationship among said plurality of base currents,

said baseband processor to detect a current gain (β) of said radio frequency digital-to-analog converter and to generate a compensation signal proportional to 1/β.

11. The baseband processor of claim 10 , further comprising a plurality of voltage tuning generators to generate a plurality of tuning voltages based on said compensation signal.

12. The baseband processor of claim 1 , said radio frequency digital-to-analog converter comprising a plurality of gain stages to be biased by said plurality of base currents.

13. The baseband processor of claim 3 , said plurality of output drivers to receive a single power level signal to adjust said plurality of base currents.

14. The baseband processor of claim 13 , said power level signal comprising a single power control voltage.

15. The baseband processor of claim 3 , said radio frequency digital-to-analog converter comprising a plurality of gain stages to be biased by said plurality of base currents.

16. The baseband processor of claim 4 , said plurality of output drivers to receive a single power level signal to adjust said plurality of base currents.

17. The baseband processor of claim 16 , said power level signal comprising a single power control voltage.

18. The baseband processor of claim 4 , said radio frequency digital-to-analog converter comprising a plurality of gain stages to be biased by said plurality of base currents.

19. The baseband processor of claim 7 , said power level signal comprising a single power control voltage.

20. The baseband processor of claim 7 , said radio frequency digital-to-analog converter comprising a plurality of gain stages to be biased by said plurality of base currents.

21. The baseband processor of claim 9 , said power level signal comprising a single power control voltage.

22. The baseband processor of claim 9 , said radio frequency digital-to-analog converter comprising a plurality of gain stages to be biased by said plurality of base currents.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2013
From: HARRIS CORPORATION
To: NORTH SOUTH HOLDINGS INC.
Reel/Frame 030119/0804 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2012
From: PINE VALLEY INVESTMENTS, LLC
To: HARRIS CORPORATION
Reel/Frame 027529/0160 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2009
From: TYCO ELECTRONICS GROUP S.A.; TYCO ELECTRONICS CORPORATION; THE WHITAKER CORPORATION; M/A-COM, INC.; RAYCHEM INTERNATIONAL; M/A-COM PRIVATE RADIO SYSTEMS CANADA CORP.
To: PINE VALLEY INVESTMENTS, INC.
Reel/Frame 023065/0269 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2009
From: M/A-COM EUROTEC B.V.
To: RAYCHEM INTERNATIONAL
Reel/Frame 023046/0291 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 15, 2006
From: LI, CHIN; STECKLER, STEVEN
To: M/A-COM, INC.
Reel/Frame 017887/0940 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 15, 2006
From: BOURKE, DONAL; CAREY, EOIN
To: M/A-COM EUROTEC BV
Reel/Frame 017909/0196 →