Azure Summit Technology
Thinh Ho has extensive work experience in software engineering, with a focus on developing and programming. They began their career as a Software Developer at High Performance Technologies, Inc. in 2007 and worked there until 2011. Thinh then joined Salient Federal Solutions as a Software Engineer from 2011 to 2013. They later worked as a Software Engineer at Northstrat Incorporated from 2013 to 2021. Thinh's most recent role was also as a Software Engineer at Azure Summit Technology starting in January 2022. In addition to their software engineering roles, Thinh also served as an Assistant Wrestling Coach at Fairfax County Public Schools from 2010 to 2015 and from 2017 to 2021.
Thinh Ho completed a Bachelor of Science (BS) degree in Computer Science from the University of Virginia, from 2003 to 2007. Following this, Thinh pursued further education and earned a Master of Science (MS) degree in Computer Science from George Mason University, from 2008 to 2011.
Azure Summit Technology
Azure Summit Technology is a mature, growing small business with locations in Fairfax, Virginia, and Melbourne, Florida, that develops and delivers high-performance RF hardware, firmware, and software products, and innovative, practical, multi-function RF systems solutions that address emerging missions of national importance for customers across the Department of Defense. We are a diverse team of highly qualified RF systems engineers and mission subject matter experts (SMEs) with backgrounds in electrical, mechanical, RF, hardware, software, firmware and systems engineering, working together within a creative, innovative, and highly collaborative culture, to deliver cutting edge solutions for our customers. We are problem solvers with a passion to succeed who bring our unique perspectives and diverse experiences together to successfully address our customers’ toughest challenges. Azure Summit Technology provides a wide range of multi-channel software defined radio solutions for applications including surveillance, emitter location, direction-finding, interference cancellation, radar and communications. Systems can be tailored to meet a variety of requirements for bandwidth, dynamic range, number of channels, and computational resources. Supported platforms range from resource-constrained small UAVs and wearable devices to manned aircraft and submarines. Azure also offers innovative signal processing solutions to challenging problems in the realm of radio frequency spectrum awareness.