David M Heap238 3000, Bountiful, UT 84010

David Heap Phones & Addresses

238 3000, Bountiful, UT 84010 (801) 292-8778

139 2700, Bountiful, UT 84010 (801) 294-3106

Fond du Lac, WI

602 Skyline St, Stillwater, OK 74075 (405) 533-1525

Mentions for David M Heap

Career records & work history

License Records

David Matthew Heap

Address:
Bountiful, UT
Licenses:
License #: 368548-2202 - Expired
Category: Engineer/Land Surveyor
Type: Professional Engineer

David W Heap

Licenses:
License #: 91762 - Expired
Issued Date: Apr 1, 1975
Expiration Date: Aug 27, 2000
Type: Broker

David Heap resumes & CV records

Resumes

David Heap Photo 42

Technical Manager - Diesel Programs

Location:
Fond Du Lac, WI
Industry:
Consumer Goods
Work:
Mercury Marine Oct 2011 - Oct 2013
Design Engineer
Mercury Marine Oct 2011 - Oct 2013
Technical Manager - Diesel Programs
Mercury Marine Apr 2004 - Oct 2011
Pdm Application Engineer
Ptc Jan 2000 - Mar 2004
Senior Mcad Technical Support Engineer
University of Utah Medical Center Oct 1997 - Dec 1999
R and D Engineer
Education:
Oklahoma State University 2008 - 2008
Master of Science, Masters, Management, Engineering
University of Utah 1999 - 1999
Bachelors, Bachelor of Science, Mechanical Engineering
Skills:
Root Cause Analysis, R&D, Design For Assembly, Design Engineering, Management, Leadership, Ptc Creo, Dfmea, Fmea, Software Development, Engineering Change Management, Pro Engineer, Strategic Planning, Engineering
David Heap Photo 43

David Heap

David Heap Photo 44

David Heap

David Heap Photo 45

David Heap

Location:
United States
David Heap Photo 46

David Heap

David Heap Photo 47

David Heap

Publications & IP owners

Wikipedia

David Heap Photo 48

David Porter Heap

David Porter Heap (March 24, 1843-October 25, 1910) was an American engineer, born in San Stefano, Turkey, and educated at Georgetown College, and at West

Us Patents

Marine Drive Housing

US Patent:
D583830, Dec 30, 2008
Filed:
Sep 19, 2006
Appl. No.:
29/266327
Inventors:
Benjamin S. Burkhart - Stillwater OK, US
David M. Heap - Stillwater OK, US
Keith W. Schmidt - Stillwater OK, US
Assignee:
Brunswick Corporation - Lake Forest IL
International Classification:
1501
US Classification:
D15 4

Dna Amplification Using Electrolyte Conductance Heating And Temperature Monitoring

US Patent:
2002015, Oct 17, 2002
Filed:
Aug 12, 1999
Appl. No.:
09/373041
Inventors:
CARL T. WITTWER - SALT LAKE CITY UT, US
MARK G. HERRMANN - CLINTON UT, US
DAVID M. HEAP - BOUNTIFUL UT, US
International Classification:
C12M001/40
US Classification:
435/286100, 435/287200, 435/303100, 435/091200, 392/323000, 204/601000
Abstract:
A system for thermal cycling a sample utilizing electrolyte conductance heating. An electric current is passed through the sample to increase its temperature due to resistance heating. As the sample acquires more thermal energy its viscosity changes, which causes a change in resistance. Because of this characteristic, temperature of the sample can be measured as a function of resistance and temperature can be controlled using resistance of the solution as feedback to a circuit which controls the heating of the sample by electrical conductance.

Performance Monitor Apparatus And Method

US Patent:
4231106, Oct 28, 1980
Filed:
Jul 13, 1978
Appl. No.:
5/924242
Inventors:
David L. Heap - Centerville UT
Allen L. Kenner - Magna UT
Assignee:
Sperry Rand Corporation - New York NY
International Classification:
G06F 900
US Classification:
364900
Abstract:
Performance monitor apparatus is adapted to monitor various computer program events such as the length of time required to execute a particular program, the number of times a particular program or instruction sequence is executed during some predetermined period, etc. The apparatus includes a buffer for receiving an instruction data word from a data processor and for temporarily storing the data word, a register having a plurality of bistable elements each of which is adapted to produce either a first or second output signal in response to receipt of a first or second operation signal respectively and receipt of a select signal, a select logic circuit for applying a select signal to a particular bistable element identified by certain bits of the instruction data word stored in the buffer, and an operation logic circuit for supplying to the bistable elements either a first or second operation signal as determined by certain other bits of the instruction data word stored in the buffer. Each bistable element represents a different event or occurrence in a computer program being monitored and the signals produced by the bistable elements indicate the nature of the monitoring operation to be performed. The signals are supplied to timing and counting apparatus which then either measures the time over which the signals are produced or increments a count in response to receiving the signals.

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