About The Position

We are seeking a hands-on Embedded Hardware Engineer to design, develop, and debug the electronics within advanced airborne, land, and maritime electro-optical systems. This is a highly technical, bench-focused engineering role where you will own hardware development from concept through schematic capture, PCB layout, bring-up, integration, qualification, and production support. The position includes development of electronics supporting real-time video processing, motor control and stabilization, communications interfaces, and power regulation systems. In addition to new product development, you will serve as a hardware escalation resource for manufacturing and field service teams, supporting root cause investigations, corrective actions, and continuous product improvement initiatives.

Requirements

  • Bachelor’s degree in Electrical Engineering, Computer Engineering, or a related technical discipline
  • 5+ years of hands-on embedded hardware design experience supporting production hardware
  • Experience with schematic capture, PCB layout, hardware integration, and production support
  • Practical experience with embedded digital interfaces including SPI, I²C, UART, RS-232, RS-422, and Ethernet
  • Experience supporting high-speed video, high-speed serial, or related interface technologies
  • Experience working with microcontrollers and FPGA-based systems
  • Strong understanding of power electronics, DC/DC conversion, regulation, sequencing, and protection circuits
  • Strong analytical, troubleshooting, and technical communication skills
  • Must qualify as a U.S. Person under ITAR/EAR regulations

Nice To Haves

  • Experience with Altium Designer
  • Experience with brushless motor control and stabilization systems
  • Experience supporting gyros, encoders, IMUs, or related sensor technologies
  • Experience with EO/IR imaging systems and video electronics
  • Exposure to FPGA development, VHDL, or Verilog environments
  • Embedded firmware development experience in C
  • Familiarity with aerospace, defense, or environmental qualification standards such as DO-160, MIL-STD-810, or MIL-STD-461.
  • Experience supporting airborne, maritime, defense, public safety, or surveillance systems
  • Experience with structured root cause analysis and continuous improvement methodologies

Responsibilities

  • Own board-level hardware design activities from requirements through release, including architecture development, component selection, schematic capture, and PCB layout
  • Design circuitry supporting real-time video processing, motor control and stabilization, serial communications, and DC/DC power regulation and distribution
  • Apply disciplined high-speed digital, mixed-signal, and power design methodologies
  • Design for EMI/EMC compliance, thermal performance, reliability, and environmental robustness
  • Integrate and support microcontrollers, FPGAs, and supporting digital architectures
  • Develop and maintain engineering documentation, including schematics, bills of material, fabrication drawings, interface control documents, and test procedures
  • Perform first-article board bring-up and hardware characterization activities
  • Troubleshoot hardware faults at the component, circuit, and system level
  • Utilize oscilloscopes, spectrum analyzers, logic analyzers, DMMs, power supplies, thermal imaging equipment, and other diagnostic tools
  • Validate interfaces including SPI, I²C, UART, RS-232, RS-422, RS-485, Ethernet, CAN, USB, HDMI, SDI, LVDS, and related technologies
  • Execute design verification activities and support EMI/EMC and environmental qualification testing
  • Drive corrective actions and design improvements based on qualification and test results
  • Support manufacturing and service teams with troubleshooting, yield improvement, and technical issue resolution
  • Develop test fixtures, functional test procedures, troubleshooting guides, and production support documentation
  • Conduct failure analysis activities on returned and fielded products
  • Support engineering change implementation and continuous improvement efforts
  • Apply Design for Manufacturability (DFM), Design for Testability (DFT), and Design for Serviceability (DFS) principles
  • Provide occasional customer, supplier, and field support
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