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Entry Level Embedded Software Jobs in Detroit, MI

Office Assistant

Bloomfield, MI · On-site

$16 - $21/hr

This is an entry-level position responsible for assisting in a variety of administrative tasks ... Working knowledge of a personal computer and various software applications is beneficial. * Should ...

Entry Level Embedded Software information

See Detroit, MI salary details

$69.3K

$151.8K

$172.3K

How much do entry level embedded software jobs pay per year?

As of Aug 18, 2026, the average yearly pay for entry level embedded software in Detroit, MI is $151,844.00, according to ZipRecruiter salary data. Most workers in this role earn between $130,200.00 and $171,300.00 per year, depending on experience, location, and employer.

What is an entry level embedded software engineer?

Entry level embedded software engineers are professionals who design, develop, and test software that runs on specialized hardware devices, such as microcontrollers or embedded systems, often at the start of their careers. They typically work with programming languages like C or C++ and collaborate closely with hardware engineers to ensure software and hardware integration. These roles often involve tasks such as writing code for device drivers, debugging software, and performing basic testing, all under the guidance of more experienced engineers. Entry level positions are ideal for recent graduates or those new to embedded systems, providing foundational experience in this field.

What are the key skills and qualifications needed to thrive as an entry level embedded software engineer?

To thrive as an Entry Level Embedded Software Engineer, you need a solid background in C/C++ programming, basic knowledge of embedded systems, and a relevant degree such as electrical engineering, computer science, or a related field. Familiarity with microcontrollers, real-time operating systems (RTOS), debugging tools, and version control systems like Git is typically required. Strong problem-solving skills, attention to detail, and effective teamwork and communication abilities help you excel in this role. These skills are essential to developing reliable software, collaborating with hardware teams, and meeting project requirements in embedded system environments.

What are some typical challenges faced by entry level embedded software engineers, and how can they overcome them?

Entry-level embedded software engineers often encounter challenges such as debugging hardware-software interactions, understanding real-time constraints, and adapting to unfamiliar development environments. New engineers can overcome these hurdles by actively seeking mentorship from senior team members, practicing with debugging tools, and studying relevant hardware documentation. Regular collaboration with hardware engineers and participation in code reviews can also help build confidence and technical competence, while ensuring smoother integration and project delivery.

What is the difference between Entry Level Embedded Software vs Entry Level Firmware Engineer?

AspectEntry Level Embedded SoftwareEntry Level Firmware Engineer
Required CredentialsBachelor's in Computer Engineering, Electrical Engineering, or related fieldBachelor's in Electrical Engineering, Computer Engineering, or related field
Work EnvironmentEmbedded systems development, hardware integration, real-time OSFirmware development, microcontroller programming, hardware interfacing
Industry UsageConsumer electronics, automotive, medical devicesConsumer electronics, IoT devices, industrial equipment
Common Search/ComparisonYesYes

Entry Level Embedded Software and Entry Level Firmware Engineer roles often overlap in skills and industry usage. Both require knowledge of microcontrollers, programming languages like C, and understanding of hardware-software integration. The main difference lies in terminology: embedded software focuses broadly on software running on embedded systems, while firmware engineering emphasizes low-level programming directly on hardware. Both roles are essential in developing embedded products across various industries.

What are the most commonly searched types of Embedded Software jobs in Detroit, MI?

The most popular types of Embedded Software jobs in Detroit, MI are:

What job categories do people searching Entry Level Embedded Software jobs in Detroit, MI look for?

The top searched job categories for Entry Level Embedded Software jobs in Detroit, MI are:

What cities near Detroit, MI are hiring for Entry Level Embedded Software jobs?

Cities near Detroit, MI with the most Entry Level Embedded Software job openings:

Infographic showing various Entry Level Embedded Software job openings in Detroit, MI as of August 2026, with employment types broken down into 100% Full Time. Highlights an 67% In-person, and 33% Hybrid job distribution, with an average salary of $151,844 per year, or $73 per hour.

Systems Engineer, Cybersecurity

Torc Robotics

Ann Arbor, MI

$56 - $68.75/hr

Full-time

Posted 13 days ago


Job description

About the Company 

At Torc, we have always believed that autonomous vehicle technology will transform how we travel, move freight, and do business. 
A leader in autonomous driving since 2007, Torc has spent over a decade commercializing our solutions with experienced partners.Now a part of the Daimler family, we are focused solely on developing software for automated trucks to transform how the world moves freight. 
Join us and catapult your career with the company that helped pioneer autonomous technology and the first AV software company with the vision to partner directly with a truck manufacturer. 


Position Overview:
  • We are seeking an enthusiastic, detail-oriented Entry-Level Automotive Cybersecurity Engineer to join our Base Hardware Cybersecurity team. In this role, you will help design, test, and implement secure architectures for next-generation Electronic Control Units (ECUs).
  • You will work closely with cross-functional engineering teams and leading Tier-1 automotive suppliers to ensure our vehicle systems satisfy rigorous automotive security standards (e.g., ISO/SAE 21434, UN R155) throughout the system development lifecycle.
Key Responsibilities:
  • ECU Security Architecture & Implementation: Assist in defining security requirements for hardware and embedded software on automotive ECUs (including Secure Boot, Hardware Security Modules (HSM), cryptographic key management, and secure communication protocols).
  • Supplier Collaboration: Coordinate directly with Tier-1 suppliers to communicate cybersecurity technical requirements, review supplier deliverables, analyze security concepts, and track resolution of technical issues.
  • Threat Analysis & Risk Assessment (TARA): Participate in performing TARAs on vehicle systems and components to identify potential attack vectors, threat scenarios, and risk levels.
  • Protocol & Bus Security: Evaluate and support implementation of security controls on in-vehicle networks, including CAN / CAN-FD, Automotive Ethernet, and LIN (e.g., SecOC / Secure On-Board Communication).
  • Testing & Validation: Perform hands-on security verification, static/dynamic code analysis reviews, and assist with penetration testing or vulnerability scans on bench environments and target hardware.
  • Compliance & Process Support: Ensure engineering activities align with industry cybersecurity frameworks such as ISO/SAE 21434 and UNECE regulations (UN R155 / R156).
Qualifications & Skills
Required Education & Experience:
  • Bachelor's degree in Cybersecurity, Electrical Engineering, Computer Engineering, Computer Science, or a related technical field (or equivalent hands-on project/internship experience).
  • 0 to 2 years of professional or academic/internship experience in cybersecurity, embedded systems, or automotive engineering.
Technical Competencies:
  • Embedded Fundamentals: Basic understanding of embedded systems architecture, microcontrollers, real-time operating systems (RTOS), and C/C++ programming.
  • In-Vehicle Networks: Familiarity with automotive communications protocols such as CAN, CAN-FD, LIN, or Automotive Ethernet.
  • Core Security Concepts: Solid understanding of symmetric/asymmetric cryptography, hashing, public key infrastructure (PKI), and secure boot mechanisms.
  • Communication: Strong verbal and written communication skills to articulate technical requirements to Tier-1 suppliers and cross-functional teams.
Preferred / Bonus Qualifications:
  • Familiarity with automotive security standards (ISO/SAE 21434, AUTOSAR SecOC, UN R155/R156).
  • Hands-on experience with hardware/firmware debugging tools (e.g., Vector CANoe, logic analyzers, oscilloscope, or JTAG debuggers).
  • Relevant entry-level certifications or training (e.g., CompTIA Security+, CEH, or coursework/certifications specific to embedded or automotive security).