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Remote Embedded System Design Jobs in Burr Ridge, IL

Substation Design Engineer

Chicago, IL · Remote

$100K - $128K/yr

Hybrid/Remote Substation Electrical Engineer - Grid Mid to Senior Level | Electrical Power ... Strong academic and practical background in electrical power systems and AC power system analysis

Substation Design Engineer

Chicago, IL · Remote

$100K - $128K/yr

Hybrid/Remote Substation Electrical Engineer - Grid Mid to Senior Level | Electrical Power ... Strong academic and practical background in electrical power systems and AC power system analysis

Design Expert - Remote

Chicago, IL · On-site +1

$30 - $70/hr

Remote Schedule: Flexible / Self-Directed Job Overview We are seeking senior Product Design and AI ... Product design, UX/UI, design systems, component libraries, research, and usability. No formal ...

Remote Job Overview We are seeking experienced Backend Java Developers to support a high-impact ... to design, develop, review, and optimize scalable systems using Java, Spring Boot, and ...

This compensation range is specific to a remote role and takes into account the wide range of ... Experience working in Agile delivery environments with validation activities embedded in sprints

This compensation range is specific to a remote role and takes into account the wide range of ... Experience working in Agile delivery environments with validation activities embedded in sprints

This compensation range is specific to a remote role and takes into account the wide range of ... Experience working in Agile delivery environments with validation activities embedded in sprints

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Showing results 1-20

Remote Embedded System Design information

See Burr Ridge, IL salary details

$61.7K

$135.4K

$189.4K

How much do remote embedded system design jobs pay per year?

As of Sep 6, 2026, the average yearly pay for remote embedded system design in Burr Ridge, IL is $135,449.00, according to ZipRecruiter salary data. Most workers in this role earn between $110,000.00 and $161,300.00 per year, depending on experience, location, and employer.

What is remote embedded system design?

Remote embedded system design involves creating and developing embedded systems—specialized computing hardware and software that perform dedicated functions—while working from a location outside of the traditional office or laboratory. Professionals in this field use remote collaboration tools to design, develop, test, and troubleshoot embedded hardware and firmware for devices like IoT gadgets, medical devices, automotive systems, and industrial controllers. This remote approach allows teams to work together across different geographic locations, leveraging cloud-based development environments and hardware simulation tools to ensure seamless integration and functionality.

What are the key skills and qualifications needed to thrive as a remote embedded system designer?

To thrive as a Remote Embedded System Designer, you need a solid background in electronics engineering, embedded programming (such as C/C++), and experience with microcontrollers or FPGA architectures, typically backed by a relevant degree. Familiarity with tools like MATLAB, Simulink, Altium Designer, and version control systems, along with certifications like Certified Embedded Systems Engineer, is often required. Strong problem-solving abilities, self-motivation, and effective remote communication skills help professionals excel in distributed teams. These capabilities ensure the efficient development, testing, and deployment of reliable embedded systems in a remote work environment.

What are some common challenges faced by remote embedded system design engineers, and how can they be addressed?

Remote embedded system design engineers often encounter challenges such as limited access to physical hardware for testing, communication barriers with cross-functional teams, and coordinating firmware updates across different environments. These can be addressed by utilizing remote access tools, simulation environments, and efficient project management platforms to facilitate collaboration and testing. Regular virtual meetings and clear documentation also help ensure alignment with hardware teams and smooth integration throughout the project lifecycle.

What is the difference between Remote Embedded System Design vs Remote Firmware Developer?

AspectRemote Embedded System DesignRemote Firmware Developer
CredentialsBachelor's in Electrical Engineering, Computer Engineering, or related fields; knowledge of hardware and software integrationBachelor's in Computer Science, Electrical Engineering, or related; proficiency in programming languages like C/C++
Work EnvironmentDesigning hardware-software systems, often collaborating with hardware teamsWriting and testing firmware code for embedded devices
Industry UsageElectronics, IoT, automotive, aerospaceConsumer electronics, IoT, medical devices

Remote Embedded System Design focuses on creating integrated hardware and software solutions, while Remote Firmware Developer primarily writes and tests firmware code. Both roles require technical skills but differ in their core responsibilities and work focus.

What are popular job titles related to Remote Embedded System Design jobs in Burr Ridge, IL?

For Remote Embedded System Design jobs in Burr Ridge, IL, the most frequently searched job titles are:

What cities near Burr Ridge, IL are hiring for Remote Embedded System Design jobs?

Cities near Burr Ridge, IL with the most Remote Embedded System Design job openings:

Robotics/Mechatronics Expert - Remote

YO AI Labs

Chicago, IL • Remote

$80 - $100/hr

Full-time

Posted 11 days ago


Job description

Job Title: Robotics & Mechatronics AI Expert

Role Type: Contractor
Location: Remote

Job Overview

We are seeking experienced Robotics and Mechatronics Experts to contribute their technical expertise to a project focused on advancing next-generation AI systems. In this role, you will apply your engineering knowledge to real-world robotics and mechatronics challenges while demonstrating how advanced AI coding agents can support complex technical workflows.

The ideal candidate combines hands-on expertise in robotics, mechatronics, system design, and engineering problem-solving with practical experience using AI coding agents such as Codex, Claude Science, Claude Code, and Claude Cowork.

No prior experience in AI training is required—your domain expertise, technical judgment, and ability to apply AI agents to sophisticated engineering problems are what matter most.

Scope of Work
  • Analyze and solve practical robotics and mechatronics problems using advanced AI coding agents.
  • Design, implement, test, and document solutions to challenging technical scenarios involving robotics and mechatronic systems.
  • Demonstrate how AI agents can be applied to complex, ambiguous, or large-scale engineering problems.
  • Use AI coding agents for tasks such as navigating large codebases, debugging complex issues, developing features, and optimizing technical workflows.
  • Document agent-driven workflows, including the technical context, decisions, prompts or instructions, generated code sequences, iterations, and outcomes.
  • Evaluate AI-generated solutions for technical correctness, reliability, maintainability, and practical engineering relevance.
  • Provide structured written and verbal feedback on AI agent performance, usability, limitations, and effectiveness.
  • Contribute real-world examples involving end-to-end feature development, system design, architectural changes, debugging, and workflow automation.
  • Collaborate remotely with project stakeholders to identify opportunities for using AI agents to accelerate robotics and mechatronics development.
Required Skills
  • Robotics
  • Mechatronics
  • AI Coding Agents
  • Codex
  • Claude Science
  • Claude Code
  • Claude Cowork
  • System Design
  • Debugging Complex Codebases
  • End-to-End Feature Development
  • Technical Documentation
  • Problem-Solving
  • Written and Verbal Communication
  • Remote Collaboration
Preferred Qualifications
  • Current or recent professional experience in robotics, mechatronics, automation, controls, embedded systems, or a related STEM discipline.
  • Demonstrated hands-on experience with robotics or mechatronics projects involving software, hardware, control systems, sensors, actuators, or system integration.
  • Proven experience using Codex, Claude Science, Claude Code, and Claude Cowork to generate and execute multi-step code sequences for real-world engineering applications.
  • Experience applying AI coding agents beyond simple code generation, including debugging, system design, architecture, optimization, testing, and technical workflow automation.
  • Experience working with large or complex codebases and implementing end-to-end technical features.
  • Familiarity with major architectural changes, refactoring, system integration, and troubleshooting complex engineering software.
  • Ability to clearly document technical workflows and explain how AI agents contributed to engineering decisions and outcomes.
  • Strong written and verbal communication skills with the ability to communicate complex technical concepts clearly.
  • Experience working independently in remote, collaborative engineering environments.
  • Ability to provide concrete examples demonstrating how AI agentic workflows have improved technical problem-solving, development speed, or engineering productivity.