Workforce Development

Education, Training and Workforce Development

A productive semiconductor workforce needs to be well versed in diverse concepts originating from semiconductor materials, devices, circuits, architecture, EDA tools, packaging, power delivery, thermal management etc. For example, an engineer with computer engineering expertise developing the next generation of AI hardware needs to be well versed with packaging issues such as thermal management and reliability which are conventionally mechanical engineering domains. Historically semiconductor concepts are split across three undergraduate majors: Material Science MSE, Mechanical Engineering ME and ECE with little or no cross pollination during the undergraduate education. While semiconductor education has been offered by many colleges across the nation for decades, much of this learning experience is broken across artificial boundaries imposed by a student’s majors. For example, an undergraduate student in material science would be well trained in concepts related to semiconductor materials but would be minimally exposed to concepts in circuits, architecture and packaging. The same is true for students with mechanical engineering and ECE majors. While there may be some exceptions, overall the quality of undergraduate students entering the semiconductor workforce are devoid of a holistic learning experience needed to be a productive workforce. Moreover, lack of a holistic learning experience also impacts the undergraduate student’s motivation in pursuing a career in semiconductors.

Lab

UMD is actively working to build a holistic training curriculum in semiconductors which provides a balanced learning experience across the diverse aspects of semiconductors including materials, devices, packaging, circuits, architecture and systems. We are advancing workforce development through a threefold approach.

1.       Undergraduate education.

2.       Graduate training.

3.       Lifelong learning and industry-government training

Collaborative Intelligence

This objective is being pursued through curricular and programmatic enhancement, training and workshop events, tutorials and other similar efforts. Some of our recent programs include:
1.       Undergraduate minor in semiconductors (stay tuned for details).

2.       MAGE Professional Masters in Engineering: https://mage.umd.edu/

a.       Embedded Systems

b.       ECE

c.       Cybersecurity

d.       Reliability Engineering

3.       CALCE has several professional development courses in the semiconductors domains targeting working professionals: https://calce.umd.edu/professional-development-courses


Recent workforce development and training projects:

National Science Foundation

FuSe-TG: 

Electro-Thermal Co-Design Center for Ultra-Wide Bandgap Semiconductor Devices:

https://www.nsf.gov/awardsearch/show-award/?AWD_ID=2234479

 

Investigator Role Email
Sukwon Choi Principal Investigator sukwon.choi@psu.edu
Samuel Graham Co-Principal Investigator samuelg@umd.edu
Srabanti Chowdhury Co-Principal Investigator srabanti@stanford.edu
Sriram Krishnamoorthy Co-Principal Investigator sriramkrishnamoorthy@ucsb.edu
Christina DiMarino Co-Principal Investigator dimaricm@vt.edu

Beginnings: 

Democratizing Research and Experiential Education for Microelectronics:

https://www.nsf.gov/awardsearch/show-award?AWD_ID=2322699

 

Investigator Name Role Email
Timothy K Horiuchi Principal Investigator) timmer@isr.umd.edu
Reza Ghodssi Co-Principal Investigator ghodssi@umd.edu
Pamela A Abshire Co-Principal Investigator pamela.abshire@stonybrook.edu
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