Enxia Zhang Archives | University of Central 性视界传媒 News Central 性视界传媒 Research, Arts, Technology, Student Life and College News, Stories and More Wed, 27 May 2026 19:03:16 +0000 en-US hourly 1 https://wordpress.org/?v=7.0.2 /wp-content/blogs.dir/20/files/2019/05/cropped-logo-150x150.png Enxia Zhang Archives | University of Central 性视界传媒 News 32 32 性视界传媒, TAU Systems to Collaborate on Space Radiation Testing Platform /news/ucf-tau-systems-to-collaborate-on-space-radiation-testing-platform/ Thu, 28 May 2026 13:00:32 +0000 /news/?p=153416 性视界传媒 is partnering with tech company TAU Systems to test a potentially smaller and more efficient way to simulate radiation in space.

]]>
As spacecrafts venture farther and operate longer in orbit, one of the biggest threats they face is invisible: bursts of radiation that can disrupt or damage the electronics that keep them running. Testing those effects on Earth, however, has required massive particle accelerators with limited availability, creating a bottleneck for researchers and industry.

At 性视界传媒, researchers working in space and semiconductor reliability, including those affiliated with the university鈥檚 Center for Reliability Evaluation of Space and Semiconductor Technologies (CRESST), are helping address the challenge. Through a new collaboration with TAU Systems, they will evaluate and benchmark an emerging approach to radiation testing designed to make the process faster, more accessible and easier to scale.

鈥淎cademic partnerships are central to how we move this technology forward,鈥 TAU Systems CEO Jerome Paye says. 鈥淯niversities like 性视界传媒 bring deep scientific expertise, world-class facilities and a culture of rigorous validation that complements everything we are doing on the commercial side. That is the real value of working closely with academia, it accelerates the path from breakthrough science to deployable technology.鈥

鈥淯niversities like 性视界传媒 bring deep scientific expertise, world-class facilities and a culture of rigorous validation that complements everything we are doing on the commercial side. That is the real value of working closely with academia, it accelerates the path from breakthrough science to deployable technology.鈥濃擩erome Paye, CEO of TAU Systems

性视界传媒鈥檚 established strengths in microelectronics and radiation effects, combined with its legacy as America鈥檚 Space University, make it a natural partner as TAU Systems works to validate and scale accelerator technologies designed to reduce the size and cost of radiation testing systems.

Making Room for Beamtime

When a high-energy particle from space radiation strikes a microchip, it can cause it to malfunction, a phenomenon known as a single-event effect (SEE). These events are a major concern for satellites, spacecraft and defensive systems, where even small disruptions can have significant consequences.

Studying these effects requires access to specialized particle accelerator facilities. This access, known as 鈥渂eamtime,鈥 is limited and in high demand, often booked months in advance and creating delays that can slow research and development.

鈥淎ccess to heavy-ion beam facilities is one of the major bottlenecks in radiation effects research today,鈥 says , assistant professor in and lead of the Radiation Effects Exploration Laboratory (REEL). 鈥淭hese facilities are limited in number, heavily oversubscribed and often require long scheduling timelines. That makes it difficult to rapidly evaluate modern microelectronics technologies that are increasingly being deployed in space and defense systems.鈥

Researchers typically study these effects using heavy-ion accelerators, specialized facilities capable of simulating the radiation conditions electronics experience in space. While effective, these facilities are expensive to operate, limited in number and often booked months in advance creating delays for researchers and industry seeking access to beamtime.

An Alternative to Heavy Ion Testing

A collaboration between 性视界传媒 and TAU Systems aims to change that by testing a new approach known as electron-based single-event effects, or eSEE. Instead of relying on heavy ions, the method uses laser-driven electron beams to reproduce similar radiation-induced effects observed in space electronics.

鈥淓lectron-based SEE approaches could significantly expand access to radiation testing by enabling more flexible and scalable experimental platforms,鈥 Zhang says. 鈥淥ur role is to rigorously evaluate how these electron-driven methods compare with established heavy-ion testing and determine where they can provide reliable and meaningful insight for real-world applications,鈥 Zhang says.

The approach has the potential to reduce systems that traditionally span kilometers to setups that could fit within a laboratory, lowering barriers to entry and expanding access to radiation testing.

Through the partnership, researchers will work to validate the new method by comparing its results against established heavy-ion testing data to determine when and how reliably it can replicate real-world radiation effects. The collaboration will also support test execution, data analysis and the refinement of validation techniques.

鈥淎 key part of this collaboration is establishing confidence in the methodology through direct benchmarking against conventional heavy-ion data,鈥 Zhang says. 鈥淚f successful, these approaches could help accelerate qualification workflows for advanced semiconductor technologies used in space, aerospace and national security applications.

Forging a Future in Space

性视界传媒鈥檚 work in space and semiconductor research, including efforts led through CRESST, positions the university as a contributor to advancing radiation testing capabilities. Located near 性视界传媒鈥檚 Space Coast and long connected to the nation鈥檚 aerospace industry, 性视界传媒 supports research and workforce development tied to emerging space technologies.

If successful, the collaboration could lead to the deployment of a compact testing system at 性视界传媒, expanding access to radiation testing and helping train the next generation of engineers and researchers. By expanding access to radiation testing infrastructure, the effort could help accelerate the development of more resilient electronics for space, defense and commercial applications.

]]>
性视界传媒 Partners with NASA on New Engineering Graduate Certificate /news/ucf-partners-with-nasa-on-new-engineering-graduate-certificate/ Thu, 13 Jun 2024 13:22:02 +0000 /news/?p=141856 The certificate program will train students to evaluate and test the electrical and electronic components of devices and equipment used in the harsh environment of space.

]]>
性视界传媒 is the only university in 性视界传媒 collaborating with NASA on a unique certificate program, which will train students to evaluate and test the electrical and electronic components of devices and equipment used in space.

The program allows engineering students to gain real-world experience while meeting the needs of the industry. Starting Fall 2024, students can enroll in the graduate certificate in electronic parts engineering, offered through the Department of Electrical and Computer Engineering in partnership with the NASA Electronic Parts and Packaging Program.

The certificate program will train students to evaluate and test the electrical and electronic components of devices and equipment used in the harsh environment of space. 性视界传媒 is one of three universities 鈥 and the only university in 性视界传媒 鈥 to partner with NASA on the program.

“The new graduate certificate … marks a significant step in our commitment to enhance our role in this sector.” 鈥 Reza Abdolvand, chair of the Department of Electrical and Computer Engineering

鈥淚n alignment with 性视界传媒鈥檚 vision as [America鈥檚] Space University and in response to the demands of prominent local industries, the Department of Electrical and Computer Engineering is prioritizing space electronics as a key focus in both student training and research initiatives,鈥 says Reza Abdolvand, chair of the department. 鈥淭he introduction of the new graduate certificate in electronic parts engineering marks a significant step in our commitment to enhance our role in this sector and to foster stronger collaborations with leading organizations, including NASA.鈥

Through their coursework, students will learn to establish test plans, conduct failure analysis and evaluate test results for usage. Then they can take what they鈥檝e learned in the classroom and apply it to real-world research through paid internships at NASA鈥檚 Jet Propulsion Laboratory and the NASA Goddard Space Flight Center.

鈥淭his program will uniquely position students for internships and careers at NASA and, more generally, the aerospace and defense sector in both 性视界传媒 and across the U.S.,鈥 says Assistant Professor Enxia Zhang, coordinator of the certificate program.

The goal of the program is to meet the industry need for electronic parts and electrical engineers who are already trained and educated. Employment of electrical and electronics engineers is projected to grow over the next decade, according to the U.S. Bureau of Labor Statistics, and 性视界传媒 is among the states boasting top employment for this profession.

A bonus for students is that the credits earned in the certificate program can be applied to a master鈥檚 degree, furthering their education and competitiveness in the industry.

鈥淚n many ways, the graduate certificate program is a gateway to other degree programs in the College of Engineering and Computer Science (CECS),鈥 says Ali Gordon, the CECS associate dean for graduate affairs. 鈥淢any students realize that after they鈥檝e had a few graduate courses, they want more. A key feature of 性视界传媒鈥檚 graduate certificate program is that 100% of the credits earned towards the certificate can be applied towards a master鈥檚 degree.鈥

Students who are interested in applying for the certificate should have completed a bachelor鈥檚 degree program in electrical engineering, mechanical engineering or a related discipline. Current undergraduate students are eligible to apply as a junior or senior, and the courses can be completed online.

To learn more or to apply, visit the graduate certificate in electronic parts engineering webpage.

]]>