Find Jobs
Find Jobs Near You – Available Work in Your Location
Skip to job details
TC
The Copley Consulting Group
Embedded Systems Engineer
Career Insights for Embedded Software Engineer
See where this job fits in the broader career landscape. Knowing your career path helps you see what's possible from here.
Scorecard
Based on Colorado data
Review key factors to help you decide if this role fits your goals. How is this calculated?
What they do
An Embedded Software Engineer designs or improves the embedded computer software that supports specialized hardware for certain products, devices or systems. Oversees the entire software development process. Analyzes customer or user needs, designs programs, writes code or instructs computer programmers, tests design, and documents programs. May assist with upgrades or maintenance.
$123,300 / year median in Colorado
+11% projected growth
Job Description
Our client is currently seeking a
Embedded Systems Engineer Job Description:
Digantara U.S. is a leading Space Surveillance and Intelligence company focused on ensuring orbital safety and sustainability. With expertise in space-based detection, tracking, identification, and monitoring, Digantara provides comprehensive domain awareness across regimes, allowing end users to have actionable intelligence on a single platform. At the core of its infrastructure lies a sophisticated integration of hardware and software capabilities aligned with the key principles of situational awareness: perception (data collection), comprehension (data processing), and prediction (analytics). This holistic approach empowers Digantara to monitor all Resident Space Objects (RSOs) in orbit, fostering comprehensive domain awareness. Digantara U.S. is seeking an experienced and driven Embedded Systems Engineer to determine whether the company's analytical workflows can be deployed on spaceflight and other resource-constrained processing platforms, and provides the deployment reality constraint for algorithm and model development. The role profiles workflows across representative processing architectures, identifies where processing time, memory, and power are consumed, and determines what can be partitioned, accelerated, simplified, or removed. Findings are captured in defensible trade studies and technology-maturation roadmaps suitable for customer and follow-on program review.Responsibilities:
- Profile analytical workflows across candidate onboard processing architectures, including radiation-hardened and radiation-tolerant classes such as BAE RAD5545, Cobham GR740, Microchip PolarFire SoC RT/MV variants, Xilinx KU060-class rad-tolerant FPGAs, Mercury TR-MX1, Aitech S-A1760, and rad-screened NVIDIA platforms.
- Characterize throughput, memory footprint, latency, and power for each candidate, using measured data where hardware or representative surrogates are available and clearly bounded estimates otherwise, with the basis for each clearly identified.
- Identify and quantify computational bottlenecks by pipeline stage and platform class.
- Develop
CPU/FPGA
partitioning options and identify candidate functions for hardware acceleration, with assessment of the associated engineering cost.- Work with data-science and astrodynamics staff on algorithmic simplification opportunities — reduced-order propagation, fixed-point arithmetic, model compression — quantifying the performance cost of each rather than assuming it negligible.
- Assess radiation-environment implications for the relevant orbital regimes:
SEU/SEFI
rates, mitigation approaches (TMR, scrubbing, checkpointing).- Contribute the onboard-processing portion of reference architectures: processing-element definition, data flow, interfaces to sensing and communications, and encrypted alert-generation paths.
- Develop technology-maturation roadmaps: critical technology element identification, TRL progression logic, hardware-in-the-loop validation approaches, and transition pathways such as hosted-payload and rideshare deployment.
Required Qualification:
- BS/MS in Electrical Engineering, Computer Engineering, Computer Science, or a related field, plus [5]+ years of embedded-systems experience, including work on space, avionics, or other constrained, high-reliability platforms.
- Strong C/C++ and Python, with the ability to prototype using AI coding agents and profile and optimize numerically intensive code and.
- Demonstrated experience with at least one radiation-hardened or radiation-tolerant processing platform, and working familiarity with the broader landscape.
- Hands-on FPGA experience: VHDL or Verilog, HLS toolchains, and sound judgment about appropriate hardware/software partitioning.
- Real-time and resource-constrained system design: SWaP budgeting, latency analysis, and deterministic memory management.
- Ability to produce trade studies that withstand technical review, with stated assumptions, bounded uncertainty, and conclusions traceable to data.
- Must be able to obtain and hold a U.
Preferred Qualities:
- Spaceflight heritage: hardware that has flown, or that progressed far enough through qualification to demonstrate its demands firsthand.
- Experience deploying ML inference to embedded or FPGA targets (quantization, fixed-point conversion, accelerator IP).
- Familiarity with spacecraft avionics architecture, onboard data handling, and flight-software standards (DO-178C, NASA NPR 7150.2, or similar).
- Working knowledge of onboard cryptographic implementation and key-management.
- Prior SBIR/STTR or comparable government R D experience, including authoring roadmap and transition-planning material.