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Design Engineer High-Speed Digital Design Hyperlynx Radiation Environments Worst Case Analysis

About

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Experience

  • Circuit Design Engineer Lockheed Martin Space Systems · Full-time Sep 2023 – Present 2 yrs 2 mos undefined • Design and development of High Speed Digital Electronics (up to 28Gbps line rate) and Embedded Hardware for advanced satellite C&DH avionics systems.
    • Highspeed PCB layout and routing
    • Signal integrity simulation and verification using Hyperlynx Advanced 3D-Field Solver.
    • Experience implementing DDR4 and NAND.
    • Experience implementing hardware layers for PCIe Gen. 3, Ethernet (1000BASE-T and 10GBASE-KR), RGMII, SGMII, RS-422, I2C, QSPI, SPI, JTAG, and UART.
  • Electronics Design Engineer OneCourt Technologies, Inc. · Full-time Nov 2022 – Aug 2023 9 mos WA, United States • Designed the Battery Management System (2p2s) and 30W Power Supply circuits for a wireless haptic accessibility display aimed at enhancing the experience for blind and low-vision sports fans.
    • Contributed to the development of the display’s system design and architecture.
    • Successfully designed and tested an experimental embedded inductor-coil PCB, reducing costs by integrating Linear Resonant Actuators (LRA) directly into the PCB.
  • Embedded systems engineer WYZE Labs, Inc. · Internship Jun 2022 – Nov 2022 5 mos WA, United States • Designed a goniophotometer for measuring 3D radiometric profiles of WYZE lighting prototypes and EDUs.
    • Conducted research on UX requirements, engineering principles, and relevant scientific theories.
    • Procured components such as spectrometers, development boards, and mechanical and optical parts.
    • Programmed (C++ and Python), built, calibrated, and operated the goniophotometer.
    • Developed Python-based software for data processing and generation of interactive 3D radiation profiles.

Education

  • University of Washington BSEE, Electrical Engineering, 3.85 2019 – 2023 Activities and Societies: Formula Motor Sports

Other experience

  • UWashington Formula Motor Sports Participated in the University of Washington’s sanctioned Formula SAE team with the following responsibilities:
    • Reverse-engineered and improved electric racecar’s “Brake System Plausibility Device” latching safety-circuit
    • Used Altium Designer for schematic capture and manual PCB layout/routing.
    • PCB assembly (hand-solder and reflow), testing, and debugging of various boards.

Licenses & Certifications

  • Power Electronics Specialization University of Colorado Boulder May 2024 – Present See credential