Embedded Systems Engineer (Medical Devices)

Blackcanyonconsulting
Ashburn, VA

Who this role is best for

Candidates with FPGA design expertise and embedded systems experience will find this mid-level role in the medical devices domain highly rewarding, particularly for those who can bridge hardware and software development under regulated standards.

Best fit for

  • Mid-career engineers with Xilinx FPGA and AXI protocol experience who can contribute across hardware and software domains
    — “the linchpin between the digital logic fabric and the high-level application software
  • Individuals who have worked with complex board-level schematics and high-speed signal routing for FPGA-based designs
    — “Design and own the detailed electrical schematics for complex, FPGA-centric medical devices
  • Engineers with a background in embedded Linux and kernel driver development for medical instrumentation
    — “Develop and maintain Linux kernel drivers and user-space libraries that bridge the gap between the FPGA logic and C++/Rust/Python applications

Things to consider

  • Candidates must be prepared for cross-functional collaboration, including working with PCB layout engineers and debugging hardware during bring-up.
    — “Work closely with PCB layout engineers to guide stack-up and routing; perform board bring-up, bench testing (oscilloscopes, logic analyzers), and debugging of your schematics

How to stand out

  • Highlight experience with AXI4 interfaces and FPGA IP block development in your resume and interviews.
    — “implementing custom IP blocks that communicate with user-space Linux applications via AXI4
  • Demonstrate ability to optimize embedded systems for SWAP-C constraints in your projects.
    — “Profile and optimize embedded systems for low latency, high throughput, SWAP-C (size, weight, power, and cost) constraints
  • Include examples of full-cycle medical device development in your portfolio or work history.
    — “Participate in all phases of the product lifecycle within a regulated IEC 62304 / ISO 13485 framework
  • Emphasize your ability to debug high-speed signal integrity and interface protocols like SPI, I2C, and UART.
    — “Solid understanding of communication protocols beyond AXI, such as SPI, I2C, UART, and high-speed serial links
  • Showcase your experience with embedded Linux toolchains like Yocto, PetaLinux, or Buildroot.
    — “Strong experience with embedded Linux (Yocto, PetaLinux, or Buildroot), kernel configuration, and cross-compilation
Pace · SteadyCollaboration · HighAutonomy · MediumDecision Impact · TeamLevel · Mid

Derived from job-description analysis by Serendipath's career intelligence engine.

What success looks like

  • Designed and implemented complex FPGA designs
  • Developed and maintained Linux kernel drivers
  • Participated in all phases of the product lifecycle
Typical background
Embedded systems development experienceXilinx proficiency

Skills & requirements

Required

Xilinx FPGAAXI ProtocolBoard-level ElectronicsSchematic DesignDevice Driver DevelopmentLinux KernelFull-cycle Medical Device Development

Preferred

Python ScriptingHardware-in-the-loop Testing

Stack & domain

Xilinx FpgasAXI ProtocolSchematic DesignPCB LayoutKernel DriversLinux Device DriversData Processing PipelineFPGA DesignEmbedded ProcessorsHigh-speed Signal RoutingAnalog Signal ConditioningPower DeliveryHigh-speed Memory InterfacesDDRFpga-centric Medical DevicesVivadoVitisIP CoresAXI4User-space Linux ApplicationsC++RustPythonHardware-in-the-loop (hil) TestingSwap-c ConstraintsPatient SafetyIEC 62304ISO 13485FMEAVerification TestingBoard Bring-upBench TestingOscilloscopesLogic AnalyzersRegulatory AuditsProblem-solvingFlexibilityOwnershipTeamworkAttention To DetailDocumentationMedical DevicesEmbedded SystemsQuality Management System

About the role

Original posting from Blackcanyonconsulting via Greenhouse

Overview

Are you a versatile engineer who thrives at the intersection of hardware and software? Do you have a deep understanding of Xilinx FPGAs and the AXI protocol, but also enjoy diving into schematic design, PCB layout guidance, or kernel drivers when the need arises? We are seeking a dynamic, mid-career Embedded Systems Engineer to join our team developing next-generation medical devices.

In this role, you will be the linchpin between the digital logic fabric and the high-level application software. You will architect and implement complex FPGA designs that interface seamlessly with user-space applications running on embedded processors via AXI interconnects. Beyond the FPGA, you will own the board-level electronics: you’ll generate detailed schematics for complex devices built around the Xilinx FPGA, ensuring robust power delivery, high-speed signal routing, and peripheral integration. We are looking for a “full-stack” embedded thinker, someone who is equally excited to design a new analog front-end, refactor a Linux device driver, or optimize a data processing pipeline. You won’t just be writing and using IP blocks; you will own the embedded ecosystem, from the circuit board to the application layer, delivering technology that directly impacts patient lives under a quality management system.

Key Responsibilities

Board-Level Schematic Generation: Design and own the detailed electrical schematics for complex, FPGA-centric medical devices. This includes component selection, power architecture definition, clock distribution, high-speed memory interfaces (DDR), and analog signal conditioning circuits.

FPGA Architecture & Implementation: Design, code, and verify complex digital designs on Xilinx platforms (Vivado/Vitis), with a primary focus on implementing custom IP blocks that communicate with user-space Linux applications via AXI4 (Lite, Stream, and Memory-Mapped) interfaces.

Device Driver & Kernel Development: Develop and maintain Linux kernel drivers and user-space libraries that bridge the gap between the FPGA logic and C++/Rust/Python applications.

Full-Cycle Medical Device Development: Participate in all phases of the product lifecycle within a regulated IEC 62304 / ISO 13485 framework, including requirements definition, architectural design, FMEA, and verification testing.

Cross-Functional Hardware Integration: Work closely with PCB layout engineers to guide stack-up and routing; perform board bring-up, bench testing (oscilloscopes, logic analyzers), and debugging of your schematics.

Broad Problem Solving: Demonstrate flexibility by owning problems outside any single domain. You will debug high-speed signal integrity issues one day, and write a Python script to automate hardware-in-the-loop (HIL) testing the next.

Optimization: Profile and optimize embedded systems for low latency, high throughput, SWAP-C (size, weight, power, and cost) constraints, and patient safety.

Must-Have Qualifications

Experience: 4–7+ years of hands-on experience in embedded systems development.

Schematic & Board Design: Proven ability to generate complex board-level schematics for FPGA-based designs using industry-standard tools (e.g., Altium Designer, KiCad). Must understand power sequencing, high-speed routing constraints, and mixed-signal layout considerations.

Xilinx Proficiency: Deep working knowledge of the Xilinx toolchain (Vivado, Vitis) and the ability to generate, customize, and debug IP cores connected via the AXI interconnect protocol.

Hardware Description Languages: Proficiency in VHDL, Verilog, or SystemVerilog for synthesis, simulation, and timing closure.

Embedded Linux: Strong experience with embedded Linux (Yocto, PetaLinux, or Buildroot), kernel configuration, and cross-compilation.

Software Skills: Fluency in C/C++ or Rust (preferred) for low-level firmware and driver development; proficiency in Python for scripting and data analysis.

Interface Knowledge: Solid understanding of communication protocols beyond AXI, such as SPI, I2C, UART, and high-speed serial links.

Nice-to-Have Qualifications

Medical Experience: Experience working in a regulated environment (FDA, MDR) with safety-critical standards like IEC 62304.

Analog/Digital Circuitry: Deep experience with precision analog front-ends, ADCs, DACs, and power management ICs (PMICs) commonly found in medical instrumentation.

Broad Toolbox: Experience with Digital Signal Processing (DSP), SoC design on Zynq/MPSoC/RFSoC platforms, or high-speed transceivers.

Who You Are

An Adaptable Engineer: You have deep expertise in Xilinx logic design and schematic generation, and a broad willingness and ability to contribute wherever the project needs it most, from software drivers to regulatory documentation.

A Systems Thinker: You don’t just see an FPGA task; you see the data flow from the sensor conditioning circuit, through the AXI bus, up to the UI.

A Clear Communicator: You can translate complex hardware limitations to software engineers and vice versa, documenting your work clearly for regulatory audits.

Benefits and Salary

We attract the best people in the business with our competitive benefits package, including medical, dental, and vision coverage; a 401(k) plan with employer contribution; paid holidays, vacation, and tuition reimbursement.

We offer a competitive salary commensurate with experience and location. If you enjoy being part of a high-performing, professional, technology-focused organization, please apply today!

Source: Blackcanyonconsulting careers (Greenhouse)

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