Satellite Augmentation
David is a highly analytical, performance-driven, customer-focused engineering professional who is also motivated, dependable, and resourceful with the ability to multiplex effectively across numerous tasks. Maintains a proven history of satisfying specific needs and demands of the most meticulous customers using extensive technical knowledge and genuine concern to resolve issues and improve customer satisfaction. A productive and creative collaborator who provides excellent communication and interpersonal skills, including demonstrated ability to interact effectively with customers, managers, peers, and subordinates. Committed to excellence with a proven ability to meet deadlines and exceed expectations.
Awards/Recognition:
2010 – MEI Technologies Advocate Award
Jun 2009 – Lunar Reconnaissance Orbiter Award
Jun 2008 – Fermi Gamma-ray Space Telescope Outstanding contributions and dedication award
Solder-less Feed Patent
May 2007 – Superior Service Award for outstanding teamwork and commitment in support of the MSES II/A Contract Transition
Received a patent for the design and development of the Space TUG
May 2006 – Goddard Center Best Reward for Express Logistics Carrier Project Team in recognition of achievement toward mission success utilizing a One NASA approach
Jul 2005 – HST Robotic Servicing Mission Outstanding Teamwork Award
Apr 2002 – HST Servicing Mission 3B Outstanding Commitment Award
Nov 2000 – Earth Observing-1 (EO-1) Outstanding Contributions Award
1999 – AGS GSFC Imager Instrument Team, Outstanding Teamwork Award
Dec 1999 – HST Servicing Mission 3A Outstanding Commitment to the Highly Successful Mission Award
Jul 1997 – STS-85 Outstanding Contributions Award
Feb 1997 – HST Servicing Mission 2 Outstanding Contributions Award.
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Satellite Augmentation
4 followers
VISION We’re setting the Standard for how the World Maintains Satellites in Orbit “The best way to get to the future is to invent it” The SAM spacecraft is equipped with the tools, technologies, and techniques needed to extend satellites’ lifespans – even those not originally designed to be serviced. The technology demonstrates – the first of its kind in Earth’s expanding space orbits – will create a carefully curated suite of satellite servicing technologies. Capabilities include autonomous satellite rendezvous, refueling, and satellite repositioning. Once proven in space, SAM’s technologies will reduce or eliminate the need for replacing dormant satellites. OUR MISSION Defining the way we Service Satellites Since the advent of satellite technology in 1958 with Explorer I, the U.S. and other countries have sent thousands of satellites into orbit costing millions of dollars per satellite. Today, many of those satellites are still in orbit; most of which have a lifespan of fewer than five years; to retain existing levels of operational capability, new satellites must be developed and launched before existing satellites run out of fuel and begin disintegrating into our atmosphere and in many cases falling to earth at risk to populated areas. In general, a satellite’s life span is not driven by the capability but by the amount of fuel, the satellite has available to maneuver. Satellites require the ability to maneuver to achieve specific orbits or to move out of harm’s way if a possible collision is detected. Once the fuel has been exhausted, the countdown begins and the loss of a satellite, no matter how mission-critical it may be, is imminent. Satellite Augmentation has developed a revolutionary and novel approach to extending a satellite’s lifespan. The ability to re-energize a satellite in orbit, with little to no mission impact, will enable both the Government and the commercial space industry, with the ability to extend the life of their most critical space assets. The idea proposed by Satellite Augmentation offers a cost-effective, universal method, to accomplish the latter. Combined with our patented design, by utilizing industry standards, and commercial off-the-shelf components, this novel idea can quickly move into a proof-of-concept stage and be followed with a viable concept that can be transitioned to the end-user.