About The Position

MACOM (NASDAQ: MTSI) is a global leader in the design and manufacture of advanced semiconductor products across a diverse range of end markets, including Data Centers, Telecommunications, Industrial and Aerospace and Defense. We develop innovative, cutting-edge technologies and products across the spectrum of radio frequency (RF), microwave, millimeter wave, photonics and high-speed analog technologies. Our solutions support critical network infrastructure applications like artificial intelligence, high performance computing, satellite communications, radar, unmanned aerial vehicles, medical equipment, test and measurement and advanced wireless networks. MACOM has more than 75 years of expertise in semiconductor process development, wafer fabrication, circuit design, advanced packaging, systems architecture and applications engineering. We are committed to our customers’ success. We partner with customers to help solve their most challenging problems by providing semiconductor solutions that are at the forefront of the highest power, highest frequency and/or highest data rates. Leading technologies, innovative products and driven employees. Come be a part of MACOM and help advance the next generation of connectivity infrastructure!

Requirements

  • Working on a BS or MS Degree in Electrical Engineering
  • Coarse work includes knowledge in RF or Microwave circuit design.
  • Interested in working on challenging engineering problems to benchmark and improve technologies and solutions to product.
  • Strong communication skills

Nice To Haves

  • Coarse work in Power amplifier theory
  • Knowledge of EM / microwave theory
  • Experience with RF measurements (VNA/PNA, oscilloscopes, spectrum analyzer, etc.)
  • Experience with RF/Microwave circuit analysis tools (ADS/AWR)
  • Familiarity with EM simulation tools.
  • Experience with Layout tools (ADS/AWR/Auto-Cad).
  • Data analysis

Responsibilities

  • Participating in projects requiring microwave circuit design (PCB) for high power RF amplifiers which includes class AB and Doherty amplifier design.
  • RF / microwave circuit design, application of matching network theory, and the use of industry standard CAD tools such as ADS, and EM solvers.
  • Taking RF / Microwave measurements, characterizing technologies and devices on load-pull systems, as well as RF measurements on standard test benches.
  • Analysis of data and summarization of results.

Benefits

  • Intern webinar series
  • Networking/social events
  • Formal, written feedback
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