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Phillip A Gulley, 632475 Buttes View Ln, Auburn, CA 95603

Phillip Gulley Phones & Addresses

2475 Buttes View Ln, Auburn, CA 95603    530-3056112   

San Jose, CA   

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Phillip Gulley resumes & CV records

Resumes

Phillip Gulley Photo 23

Branch Chief, General Supply Specialist, Instructor

Location:
3501 Woodbine Dr, Modesto, CA 95355
Industry:
Logistics And Supply Chain
Work:
U.s Government Agencies Sep 2015 - Jan 2016
Lead General Supply Specialist, Instructor
Defense Logistics Agency Sep 2015 - Jan 2016
Branch Chief, General Supply Specialist, Instructor
Us Government Agencies Oct 2011 - Sep 2015
Supply Management Specialist, Instructor
Governement Agency Mar 2009 - Sep 2011
Customer Account Specialist
Governement Agency Aug 2007 - Mar 2009
Administrative Assistant
Us Army Feb 1999 - Jul 2005
Senior Transportation First Sergeant
United States Postal Service Jun 1999 - Feb 2005
Process Distribution Supervisor
United States Army Reserve Feb 1992 - Dec 1999
Senior Finance Specialist
Dfas Apr 1995 - Jun 1996
Payroll Specialist
Us Army Sep 1990 - Feb 1992
Cargo Handler Sergeant
Us Army Mar 1988 - Aug 1990
Finance Specialist
Us Army Aug 1984 - Jun 1987
Transportation Specialist
Education:
Central Michigan University 2011 - 2013
Central Michigan University 2010 - 2011
Masters, Human Resources Management
Park University 2008 - 2010
Bachelor of Applied Science, Bachelors, Business Administration, Management, Business Administration and Management
Park University 2007 - 2008
Associates, Business Administration, Management, Business Administration and Management
Us Army Cargo Handler School 1990 - 1990
Us Army Finance School 1988 - 1988
Mifflin High School 1984
Us Army Transportation School 1984 - 1984
Mifflin Hs 1981 - 1984
Skills:
Information Assurance, Program Management, Leadership Development, Public Speaking, Policy, Leadership, Training, Customer Service, Team Building, Program Development, Coaching, Strategic Planning, Team Leadership, Data Analysis, Staff Development, Teaching, Management, Process Improvement, Dod, Microsoft Office
Languages:
English
Phillip Gulley Photo 24

Phillip Gulley

Phillip Gulley Photo 25

Phillip Gulley

Publications & IP owners

Us Patents

Hand-Held Computer

US Patent:
D613285, Apr 6, 2010
Filed:
Mar 24, 2009
Appl. No.:
29/334337
Inventors:
Clinton Wayne Grant - Nevada City CA, US
Phillip Gulley - Auburn CA, US
Brian Patrick Perone - Sacramento CA, US
Rhonda L. Rosales - Los Altos CA, US
Sandrine Lebas - San Francisco CA, US
Assignee:
Pasco Scientific - Roseville CA
International Classification:
1402
US Classification:
D14341

Wireless Smart Devices Having Integrated Force, Position, Acceleration, And Rotational Sensing For Science Education

US Patent:
2020009, Mar 26, 2020
Filed:
Nov 19, 2019
Appl. No.:
16/688437
Inventors:
- Roseville CA, US
Thomas Reineking - Newcastle CA, US
Phillip Gulley - Auburn CA, US
Scott E. Wild - Granite Bay CA, US
Jon D. Hanks - Newcastle CA, US
Ann D. Hanks - Newcastle CA, US
Assignee:
PASCO scientific - Roseville CA
International Classification:
G01P 13/04
G01C 21/16
G09B 19/00
G09B 23/10
Abstract:
Described herein are wireless smart devices having integrated force, position, acceleration, and rotational sensing for science education (e.g., Newton's laws of motion, kinematics, etc.). An integrated wireless device includes an accelerometer to generate acceleration data based on detecting a current rate of acceleration of the integrated wireless device, a shaft encoder to detect angular positional changes of a shaft or axle of the integrated wireless device over time, and at least one processing unit coupled to the accelerometer. The at least one processing unit is configured to decode angular position data of the shaft encoder into positional data and to synchronize acceleration data received from the accelerometer with the positional data. In one example, a force load cell is coupled to the at least one processing unit. The force load cell measures applied force or impact force.

Wireless Smart Devices Having Integrated Force, Position, Acceleration, And Rotational Sensing For Science Education

US Patent:
2017019, Jul 6, 2017
Filed:
Jan 5, 2016
Appl. No.:
14/988690
Inventors:
- Roseville CA, US
Thomas Reineking - Newscastle CA, US
Phillip Gulley - Auburn CA, US
Scott E. Wild - Granite Bay CA, US
Jon D. Hanks - Newcastle CA, US
Ann D. Hanks - Newcastle CA, US
Assignee:
PASCO scientific - Roseville CA
International Classification:
G01P 15/14
G01D 5/00
Abstract:
Described herein are wireless smart devices having integrated force, position, acceleration, and rotational sensing for science education (e.g., Newton's laws of motion, kinematics, etc.). An integrated wireless device includes an accelerometer to generate acceleration data based on detecting a current rate of acceleration of the integrated wireless device, a shaft encoder to detect angular positional changes of a shaft or axle of the integrated wireless device over time, and at least one processing unit coupled to the accelerometer. The at least one processing unit is configured to decode angular position data of the shaft encoder into positional data and to synchronize acceleration data received from the accelerometer with the positional data. In one example, a force load cell is coupled to the at least one processing unit. The force load cell measures applied force or impact force.

Controllable Propulsive Force Devices For Wireless Smart Devices

US Patent:
2017020, Jul 13, 2017
Filed:
Mar 28, 2017
Appl. No.:
15/472100
Inventors:
Richard A. Escott - Rocklin CA, US
Thomas Reineking - Newcastle CA, US
Phillip Gulley - Auburn CA, US
Scott E. Wild - Granite Bay CA, US
Jon D. Hanks - Newcastle CA, US
Ann D. Hanks - Newcastle CA, US
International Classification:
G09B 23/10
H04W 4/00
Abstract:
Described herein are propulsive force devices for providing propulsive force to integrated wireless devices for science education (e.g., Newton's laws of motion, kinematics, etc.). A propulsive force device includes a motor to drive a rotating member to generate a propulsive force and a motor driver coupled to the motor. The motor driver controls operation of the motor and at least one processing unit is coupled to the motor driver. The at least one processing unit is configured to receive a control signal from an integrated wireless device to adjust at least one parameter of the propulsive force device and to provide a control signal to the motor driver to control operation of the motor driver including adjustment of the at least one parameter.

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