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Remote Automotive Embedded Software Engineer Jobs in Taylor, MI

Senior Software Engineer, DevOps

Ann Arbor, MI · On-site +1

$160K - $190K/yr

We are seeking a Senior Software Engineer, DevOps to help design, build, and operate Utilidata ... remote work. Our Commitments: Utilidata values the diversity of our team. We provide equal ...

We are seeking a Senior Software Engineer, DevOps to help design, build, and operate Utilidata ... remote work. Our Commitments: Utilidata values the diversity of our team. We provide equal ...

ServiceNow Developer (IRM)

Troy, MI · Remote

$55.25 - $76/hr

... Fully Remote Duration 12+ Months Interview type Video Looking for a senior ServiceNow software engineer with 5+ years' experience with ServiceNow specifically experience with the integrated risk ...

Remote micro1 is engaging Computational Biology & Cheminformatics Experts to contribute their expertise to a customer's computational drug discovery project. In this role, you'll apply your expertise ...

Remote micro1 is engaging Computational Biology & Cheminformatics Experts to contribute their expertise to a customer's computational drug discovery project. In this role, you'll apply your expertise ...

Remote micro1 is engaging Computational Biology & Cheminformatics Experts to contribute their expertise to a customer's computational drug discovery project. In this role, you'll apply your expertise ...

Remote micro1 is engaging Computational Biology & Cheminformatics Experts to contribute their expertise to a customer's computational drug discovery project. In this role, you'll apply your expertise ...

Showing results 41-60

Remote Automotive Embedded Software Engineer information

See Taylor, MI salary details

$65K

$142.4K

$161.5K

How much do remote automotive embedded software engineer jobs pay per year?

As of Aug 17, 2026, the average yearly pay for remote automotive embedded software engineer in Taylor, MI is $142,390.00, according to ZipRecruiter salary data. Most workers in this role earn between $122,100.00 and $160,600.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a remote automotive embedded software engineer?

To thrive as a Remote Automotive Embedded Software Engineer, you need a strong background in computer science, embedded systems, and automotive standards like AUTOSAR, usually supported by a relevant degree. Familiarity with programming languages such as C/C++, real-time operating systems (RTOS), and tools like CANoe, MATLAB/Simulink, and version control systems is essential. Excellent problem-solving, communication, and self-motivation are critical soft skills, especially in a remote work environment. These skills ensure the reliable development of automotive software, effective remote collaboration, and compliance with industry safety and quality standards.

What is a remote automotive embedded software engineer?

A Remote Automotive Embedded Software Engineer is a professional who designs, develops, tests, and maintains software systems embedded within vehicles, such as control units, infotainment systems, and safety features, while working from a remote location. They use programming languages like C or C++ to create real-time applications that interact with automotive hardware. These engineers collaborate with teams virtually and often follow automotive standards such as AUTOSAR and ISO 26262 to ensure quality and safety. Their work is crucial to the advancement of connected and autonomous vehicles.

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

Remote Automotive Embedded Software Engineers often encounter challenges such as effective communication with cross-functional teams, managing hardware access remotely, and ensuring real-time debugging. To address these, engineers typically leverage collaboration tools for regular check-ins, utilize remote access hardware labs or simulators, and maintain thorough documentation. Strong time management and proactive communication are essential to stay aligned with project milestones and quickly resolve technical issues.

What is the difference between Remote Automotive Embedded Software Engineer vs Remote Automotive Control Systems Engineer?

AspectRemote Automotive Embedded Software EngineerRemote Automotive Control Systems Engineer
Required CredentialsBachelor's in Electrical, Computer Engineering, or related field; experience with embedded programmingBachelor's in Electrical, Mechanical, or Systems Engineering; knowledge of control algorithms
Work EnvironmentDevelops software for vehicle ECUs, often in collaboration with hardware teamsDesigns and tests vehicle control systems, integrating hardware and software
Industry UsageCommonly employed in automotive OEMs and suppliers focusing on embedded softwareUsed in automotive OEMs and Tier 1 suppliers focusing on control system development

Both roles involve working in the automotive industry with a focus on vehicle systems. The Embedded Software Engineer primarily develops software for vehicle ECUs, while the Control Systems Engineer designs and tests control algorithms. They share similar credentials and work environments but differ in their specific focus areas within automotive system development.

What are popular job titles related to Remote Automotive Embedded Software Engineer jobs in Taylor, MI?

For Remote Automotive Embedded Software Engineer jobs in Taylor, MI, the most frequently searched job titles are:

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The top searched job categories for Remote Automotive Embedded Software Engineer jobs in Taylor, MI are:

What cities near Taylor, MI are hiring for Remote Automotive Embedded Software Engineer jobs?

Cities near Taylor, MI with the most Remote Automotive Embedded Software Engineer job openings:

Manufacturing Engineer - Automotive Project Assignment

Shively Diversified Management Services

Detroit, MI • Remote

$50/hr

Contractor

Re-posted 10 days ago

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Job description

Manufacturing Engineer - GD&T & Powertrain Analysis

We're seeking an experienced Manufacturing Engineer who thrives on project-based work and is ready to take on a new assignment. Supporting a leading global automotive manufacturer in the Detroit metro area, you will contribute to an important manufacturing quality initiative focused on evaluating inspection coverage, feature verification, and process controls throughout the powertrain machining process.

In this role, you will analyze engineering drawings, quality documentation, and machining process requirements to identify how critical product features are measured and verified during production. Success in this position requires strong GD&T knowledge, blueprint interpretation skills, and a solid understanding of machining processes, cutting tools, and manufacturing principles.

  • This is a long-term consulting engagement with a minimum expected commitment of 650 hours and the potential for future project assignments.
  • The position is approximately 75% remote, with periodic onsite visits required at the customer's facility.
  • We are unable to consider candidates who require sponsorship now or in the future.
  • Key Responsibilities
  • Analyze powertrain component prints, identifying and organizing all features and dimensions produced throughout the machining process.
  • Create and maintain detailed feature lists using a provided Excel template.
  • Review Quality Control Plans to determine which print features are being inspected, document the gaging or measurement method, and record inspection frequencies.
  • Review cutting tool preset machine programs and Tool Control documentation to identify additional cutting tool features being verified during the manufacturing process.
  • Identify and document part print features that are not currently being inspected through either the Control Plan or Tool Control documentation.
  • Provide a comprehensive list of features and corresponding inspection methods, or identify where no inspection method exists, for plant review.
  • Utilize CAD software to review and analyze engineering drawings.
  • Prioritize tasks effectively and determine the appropriate sequence of activities required to complete project assignments.
  • Communicate regularly with team members and management, providing updates on project status, findings, challenges, and potential concerns.
  • Analyze engineering prints, manufacturing processes, and work orders to identify discrepancies that could result in production or quality issues.
  • Required Qualifications
  • 5+ years of experience in manufacturing engineering, process engineering, quality engineering, machining, or a related technical discipline.
  • Strong working knowledge of Geometric Dimensioning and Tolerancing (GD&T).
  • Experience reading, interpreting, and analyzing engineering drawings and blueprints.
  • Understanding of manufacturing processes, machining methods, cutting tools, and production environments.
  • Experience using CAD software for drawing review and analysis.
  • Intermediate to advanced proficiency with Microsoft Excel.
  • Strong analytical, organizational, and problem-solving skills.
  • Ability to work independently and manage priorities with limited supervision.
  • Ability to pass a pre-employment background check and drug screening.

Preferred Qualifications

  • Experience supporting powertrain, engine component, or automotive manufacturing operations.
  • Knowledge of CNC machining processes.
  • Familiarity with Computer-Aided Manufacturing (CAM) software.
  • AutoCAD experience.
  • Bachelor's degree in Engineering or a related technical field.

Why Consider This Opportunity?
This assignment offers the opportunity to support a major automotive manufacturing initiative, working directly with engineering drawings, quality control documentation, and powertrain machining processes. You'll apply your expertise in GD&T, blueprint interpretation, manufacturing processes, and inspection methodology while contributing to a high-impact project for a leading global automotive manufacturer.

If you are a detail-oriented engineer who enjoys analyzing prints, evaluating manufacturing requirements, and identifying gaps in inspection and process controls, we encourage you to apply.