IP Library › Granted Patent US 9,819,806
Granted Patent B2
US 9,819,806 · App. 14/195,309 · Granted Nov 14, 2017

Multimode multicarrier modem system and method of communication over the same

Inventors: Peter N. Heller (Somerville, MA); Edmund C. Reiter (Lincoln, MA); Michael A. Tzannes (Lexington, MA)
Assignee: INTEL CORPORATION
H04M11/062H04B1/0067H04L5/20H04L12/2898H04L25/14H04L27/122H04M11/066
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Quick Facts
Patent No.
US 9,819,806
App. No.
14/195,309
Granted
Nov 14, 2017
Kind
B2
Abstract

An alternative approach to coping with the ever increasing demand for faster communications hardware is to design modems that are capable of operating its speeds at a higher data rate than a speed required for a single port of the standard communication rate for that modem. Basically, by utilizing a resource manager, that directs the data in and out of the various portions of the modem in an orderly manner, keeping track of which of the ports is being operated at any given point in time, a standard single port modem can be reconfigured, for example, at an over clocked rate, to manipulate the data input and output of a modem.

Claims (24)

1. A communication device comprising a plurality of ports to support a plurality of modes of operation, wherein:

during a first mode of operation, the communication device is to concurrently support a first multicarrier access solution and a wireless computer network communications solution, and

during a second mode of operation, the communication device is to concurrently support a second multicarrier access solution and the wireless computer network communications solution,

wherein the first multicarrier access solution is to support communication over an amount of bandwidth different from the amount of bandwidth of the second multicarrier access solution and wherein one or more of multicarrier access solutions and the wireless computer network communications solution use the same FFT (Fast Fourier Transform) computational resources.

2. The communication device of claim 1 , wherein the first and second multicarrier access solutions are to support communications over a wireless link.

3. A method to support a plurality of modes of operation, the method comprising supporting, concurrently, a wireless computer network communications solution and a multicarrier access solution wherein the multicarrier access solution is to support communication on at least two different amounts of bandwidth, wherein the multicarrier access solution and the wireless computer network communications solution use the same FFT (Fast Fourier Transform) computational resources.

4. The method of claim 3 , wherein the multicarrier access solution is to support communications over a wireless link.

5. A method to support a plurality of modes of operation, the method comprising:

during a first mode of operation, concurrently supporting a first multicarrier access solution and a wireless computer network communications solution, and

during a second mode of operation, concurrently supporting a second multicarrier access solution and the wireless computer network communications solution,

wherein the first multicarrier access solution is to support communication over an amount of bandwidth different from the amount of bandwidth of the second multicarrier access solution and wherein one or more of multicarrier access solutions and the wireless computer network communications solution use the same FFT (Fast Fourier Transform) computational resources.

6. The method of claim 3 , wherein the multicarrier access solution is to support communications over a wireless link.

7. A non-transitory computer-readable storage medium comprising instructions that, if implemented by one or more processors, cause the one or more processors to:

during a first mode of operation, concurrently support a first multicarrier access solution and a wireless computer network communications solution, and

during a second mode of operation, concurrently support a second multicarrier access solution and the wireless computer network communications solution,

wherein the first multicarrier access solution is to support communication over an amount of bandwidth different from the amount of bandwidth of the second multicarrier access solution and wherein one or more of multicarrier access solutions and the wireless computer network communications solution use the same FFT (Fast Fourier Transform) computational resources.

8. The computer-readable storage medium of claim 7 , wherein the multicarrier access solution is to support communications over a wireless link.

9. A non-transitory computer-readable storage medium comprising instructions that, if implemented by one or more processors, cause the one or more processors to:

support, concurrently, a wireless data communications solution and a multicarrier access solution wherein the multicarrier access solution operates over a wireless link that is capable of communicating on at least two different amounts of bandwidth, wherein the multicarrier access solution and the wireless data communications solution use the same FFT (Fast Fourier Transform) computational resources.

10. A communication device comprising communication device circuitry and a plurality of ports operable to support a plurality of modes of operation, wherein:

during a first mode of operation the communication device is to concurrently support a first multicarrier access solution and a computer networking solution, and

during a second mode of operation the communication device is to concurrently support a second multicarrier access solution and the computer networking solution,

wherein the first multicarrier access solution operates over an amount of bandwidth different from the second multicarrier access solution and wherein one or more of multicarrier access solutions and the computer networking solution use the same FFT (Fast Fourier Transform) computational resources.

11. The communications device of claim 10 , wherein the networking solution supports transmission and reception of data between multiple devices over the air.

Continuity (9)
Continuation 13866703 · Apr 19, 2013
Continuation 13364561 · Feb 2, 2012
Continuation 13093126 · Apr 25, 2011
Continuation 12783815 · May 20, 2010
Continuation 11929154 · Oct 30, 2007
Division 11109646 · Apr 20, 2005
Division 09862492 · May 23, 2001
Provisional Application 60206502 · May 23, 2000
Related Publication 20140177689A1 · Jun 26, 2014