Nicole M Cunningham, Age 49704 Hollow Ridge Dr, Allen, TX 75002

Nicole Cunningham Phones & Addresses

704 Hollow Ridge Dr, Allen, TX 75002 (972) 747-9980

Parker, TX

Forney, TX

Dallas, TX

Norman, OK

Alviso, CA

6011 Bracknell Dr, Allen, TX 75002 (972) 321-4130

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Work

Position: Precision Production Occupations

Education

Degree: Bachelor's degree or higher

Mentions for Nicole M Cunningham

Publications & IP owners

Us Patents

System And Method For Generating Pseudorandom Numbers

US Patent:
7512645, Mar 31, 2009
Filed:
Mar 19, 2004
Appl. No.:
10/804750
Inventors:
Jeanne Krayer Pitz - Richardson TX, US
Alexander Teutsch - Murphy TX, US
Nicole Cunningham - Allen TX, US
Assignee:
Texas Instruments Incorporated - Dallas TX
International Classification:
G06F 1/02
US Classification:
708250, 708252, 708254
Abstract:
A system that has a pseudorandom number generator and a mapping system. The pseudorandom number generator generates a random number that is mapped by the mapping system to an output value that is selected from a set of predetermined output values. To increase the randomness of the sequence of numbers generated by the pseudorandom number generator, a tap and/or seed value of the pseudorandom number generator can be varied.

System And Method For Producing Precision Timing Signals

US Patent:
2005028, Dec 29, 2005
Filed:
Jun 28, 2004
Appl. No.:
10/878341
Inventors:
Alexander Teutsch - Murphy TX, US
Mohammad Al-Shyoukh - Richardson TX, US
Nicole Cunningham - Allen TX, US
International Classification:
G06F001/12
US Classification:
713400000
Abstract:
Systems and methods are provided for providing precision timing signals. A first register bank, driven by a first clock signal, provides a first delay along a first signal path. A second register bank, driven by a second clock signal related to the first clock signal, provides a second delay along a second signal path. A system control controls at least one of the first and second banks of registers to control the first and second delays, as to provide a desired skew between the output of the first signal path and the second signal path.

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