Electrical Engineer - Advanced SoC, Networking, and Embedded Systems at Forward EdgeAI Inc
Remote, Oregon, USA -
Full Time


Start Date

Immediate

Expiry Date

14 Dec, 25

Salary

0.0

Posted On

16 Sep, 25

Experience

7 year(s) or above

Remote Job

Yes

Telecommute

Yes

Sponsor Visa

No

Skills

Good communication skills

Industry

Electrical/Electronic Manufacturing

Description

About Us
Forward Edge-AI, Inc. is a leader in AI, cybersecurity, and advanced technology solutions for national security, defense, and aerospace markets. We design and deliver cutting-edge electronic systems that meet the world’s most demanding standards. Our engineers work at the forefront of hardware innovation, from secure compute modules to mission-ready networking systems.
Position Summary
We are seeking a highly skilled Electrical Engineer with expertise in digital signal processing and embedded systems to design and prototype advanced compute and networking hardware. This role requires deep experience in SoC and microcontroller-based compute modules, high-performance networking devices (10Gbps+), compact PCB design, embedded C development, and secure system integration.
The ideal candidate bridges hardware and firmware, capable of taking high-speed designs from concept through prototype to production-ready systems, with a strong emphasis on low SWaP (Size, Weight, and Power) design principles.

Responsibilities

  • Architect and integrate SoC and MCU compute modules for high-performance embedded applications
  • Design and validate high-speed networking systems supporting 10Gbps+ throughput, including SERDES and PHY integration
  • Perform hands-on soldering, assembly, and rework of prototypes
  • Conduct board bring-up, validation, and troubleshooting at hardware and firmware levels
  • Create and optimize compact, multi-layer PCB designs with Altium Designer, ensuring high signal integrity, manufacturability, and thermal efficiency
  • Work with Ethernet PHYs, PCIe, DDR, QSPI, and other high-speed I/O interfaces
  • Implement secure hardware elements such as watchdog circuits, anti-tamper features, HSMs, TPMs, and secure boot mechanisms
  • Develop and debug U-Boot, secure boot chains, and low-level bootloaders
  • Write embedded C firmware for hardware initialization and diagnostics
  • Apply engineering best practices to ensure systems meet stringent low SWaP requirements
  • Utilize lab equipment (oscilloscopes, VNAs, logic analyzers, JTAG, etc.) for validation and debug

Qualifications

Required

  • Bachelor’s or Master’s degree in Electrical Engineering, Computer Engineering, or related field
  • Must be able to obtain and maintain a U.S. Secret clearance
  • 7+ years of experience in SoC-based hardware and embedded systems design
  • Strong background in 10Gbps+ networking hardware and PHY integration
  • Demonstrated expertise in board bring-up, debug, and troubleshooting
  • Hands-on soldering and rework of fine-pitch components and prototypes
  • Proven skills in Altium Designer for PCB design
  • Embedded C coding for hardware bring-up, control, and system monitoring
  • Familiarity with watchdog, anti-tamper, secure boot, HSM, and TPM systems
  • Experience with low SWaP system design
  • Proficiency in simulation and signal integrity tools, and use of standard lab equipment

Preferred

  • Knowledge of FPGA development and integration for embedded systems
  • Familiarity with hardware compliance standards (MIL-STD, DO-254, IPC, etc.)
  • Background in system-level integration of compute and networking hardware

Application Process

How To Apply:

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Responsibilities
  • Architect and integrate SoC and MCU compute modules for high-performance embedded applications
  • Design and validate high-speed networking systems supporting 10Gbps+ throughput, including SERDES and PHY integration
  • Perform hands-on soldering, assembly, and rework of prototypes
  • Conduct board bring-up, validation, and troubleshooting at hardware and firmware levels
  • Create and optimize compact, multi-layer PCB designs with Altium Designer, ensuring high signal integrity, manufacturability, and thermal efficiency
  • Work with Ethernet PHYs, PCIe, DDR, QSPI, and other high-speed I/O interfaces
  • Implement secure hardware elements such as watchdog circuits, anti-tamper features, HSMs, TPMs, and secure boot mechanisms
  • Develop and debug U-Boot, secure boot chains, and low-level bootloaders
  • Write embedded C firmware for hardware initialization and diagnostics
  • Apply engineering best practices to ensure systems meet stringent low SWaP requirements
  • Utilize lab equipment (oscilloscopes, VNAs, logic analyzers, JTAG, etc.) for validation and debu
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