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Entry Level Design Verification Engineer Jobs in Troy, MI

Feature Systems Engineer

Dearborn, MI · On-site

$93K - $210K/yr

Feature Systems Engineer - positions offered by Ford Motor Company (Dearborn, Michigan). Note, this ... Plan and execute design verification plans to ensure proper feature-level performance. Sign-off on ...

Feature Systems Engineer

Dearborn, MI · On-site +1

$93K - $210K/yr

Feature Systems Engineer - positions offered by Ford Motor Company (Dearborn, Michigan). Note, this ... Plan and execute design verification plans to ensure proper feature-level performance. Sign-off on ...

Cloud Prognostics Engineer

Dearborn, MI · On-site

$51.25 - $68.50/hr

The engineer must ensure seamless traceability from high-level customer experience goals down to software requirements, hardware interfaces, and Design Verification Plans (DVP). In-depth knowledge of ...

Cloud Prognostics Engineer

Dearborn, MI · On-site

$51.50 - $69/hr

The engineer must ensure seamless traceability from high-level customer experience goals down to software requirements, hardware interfaces, and Design Verification Plans (DVP). * In-depth knowledge ...

Product Design Engineer

Allen Park, MI · On-site

$81K - $160K/yr

Verification of employment eligibility will be required at the time of hire. We are an Equal ... Product Design Engineer - positions offered by Ford Motor Company (Allen Park, Michigan). Note ...

... engineers with prototype development and design verification. Build and maintain custom test fixtures and hardware-in-the-loop (HIL) systems. Provide recommendations for improving product reliability ...

Showing results 41-60

Entry Level Design Verification Engineer information

See Troy, MI salary details

$98.9K

$139.8K

$156.5K

How much do entry level design verification engineer jobs pay per year?

As of Sep 1, 2026, the average yearly pay for entry level design verification engineer in Troy, MI is $139,780.00, according to ZipRecruiter salary data. Most workers in this role earn between $127,500.00 and $155,600.00 per year, depending on experience, location, and employer.

What is an entry level design verification engineer?

An Entry Level Design Verification Engineer ensures that hardware designs function correctly before production. They write and run testbenches using languages like SystemVerilog and work with simulation tools to verify chip functionality. Their role involves debugging, analyzing test results, and collaborating with designers to refine designs. This position is crucial in the semiconductor industry to prevent costly design errors. Typically, they work with verification methodologies like UVM to create efficient and reusable test environments.

What does an entry level design verification engineer do?

As an Entry Level Design Verification Engineer, your daily activities often include writing and executing testbenches, analyzing simulation results, identifying design bugs, and collaborating closely with design and development engineers to resolve issues. You may also be responsible for maintaining verification documentation and participating in code reviews or team meetings. The role involves a mix of hands-on technical work and teamwork, allowing you to learn best practices from experienced colleagues. Over time, you'll have opportunities to take on more complex verification tasks and contribute to process improvements as you gain experience.

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

To thrive as an Entry Level Design Verification Engineer, you need a solid understanding of digital logic design, computer architecture, and verification methodologies, typically supported by a degree in electrical engineering, computer engineering, or a related field. Familiarity with hardware description languages (such as Verilog or VHDL), simulation tools, and industry-standard verification frameworks is essential. Strong analytical skills, attention to detail, and effective communication are vital soft skills for diagnosing issues and collaborating with design teams. These skills ensure accurate verification of hardware designs and smooth integration within the broader engineering workflow.

What cities near Troy, MI are hiring for Entry Level Design Verification Engineer jobs?

Cities near Troy, MI with the most Entry Level Design Verification Engineer job openings:

Infographic showing various Entry Level Design Verification Engineer job openings in Troy, MI as of August 2026, with employment types broken down into 85% Full Time, 12% Part Time, 1% Temporary, and 2% Contract. Highlights an 80% Physical, 5% Hybrid, and 15% Remote job distribution, with an average salary of $141,362 per year, or $68 per hour.

Soft and Virtual ECU Engineer

ALTEN Technology USA

Auburn Hills, MI • On-site

Full-time

This job post has expired 1 day ago. Applications are no longer accepted.


Job description

Job Description:

  • Build your brand. Tell your story. Take advantage of a rare opportunity to start from the ground up and build something great.
  • We are looking for technology game changers to lead Client into a fundamental transformation within the automotive industry. 
  • Technology is going to disrupt the automotive industry significantly in the next decade and our organization is seeking high potential candidates to transform the company with a focus on the customer experience. 
  • Client Software Organization (SWx) was established to build the most captivating experiences in the latest frontier of Automotive Technology. 
  • As part of that foundation, we are seeking passionate and conscientious Soft and Virtual ECU engineer to develop the virtual test platforms(xIL) for the next generation vehicle controller testing, which includes soft and virtual ECU's generation (various virtual ECU levels), toolchain and methodology, integration, open loop and closed loop testing and deployment in different domains (ADAS/ AD, Energy, E-powertrain and Body, Cockpit and Connected services).

Position Requirements:

  • You will be part of a global SW driven engineering organization with a modern state of the art agile culture.
  • If you have a proactive quality mindset and a test from day one attitude, you will be the right candidate.
  • We are looking for highly motivated Soft and Virtual ECU engineer to work side by side with SW development and test engineers within agile teams from the early design phase until validation.
  • This new way of testing starts at day one by not only testing implementations and requirements but challenging design and logical architecture in the earliest phase driven by a test first/test right now mentality!
  • Beside this proactive test first/test right now, mindset we seek for good expertise on the following:
  • MBSE
  • MBD
  • Virtual and Soft ECU
  • Software verification and validation methods
  • In addition, you have the opportunity to set new benchmarks in terms of virtualization technologies, troubleshooting/ root causing/ resolving issues, automation and methodology by advancing CI/CD mindset on all abstraction levels starting with continuous design verification down to continuous testing and deployment in highly virtualized environments. You will be part of an interdisciplinary agile team designing and applying agile methods for new and advanced features including ADAS and EV systems.

Basic Qualifications:

  • Bachelor of Science degree in Mechanical Engineering, Electrical/Electronic Engineering, Computer Engineering, or a closely related Engineering degree from an accredited university
  • 2 years of experience developing virtual test platforms (MIL, SIL, HIL) in automotive applications
  • Experience with virtualization, cosimulation and system integration toolchain (i.e. dSPACE, ETAS, VVirtualTarget, QTronic Silver, Model.CONNECT, VDK, Siemens etc.)
  • Knowledge of CI/CD tools and methods
  • Experience with model-based development tools such as MATLAB/SIMULINK
  • Thorough understanding of embedded software development (C, C++), AUTOSAR software architecture, auto code generation process and tools and experience with software such as Visual Basic, Python, VBnet
  • Knowledge of CAN and analysis tools
  • Familiarity with SW version control
  • Ability to troubleshoot and fix platform issues and systems focused
  • Good understanding of ECU architecture and usage of SW emulators and/ or SW debuggers
  • Good understanding of ECU Level vehicle features in at least one domain
  • Experience in one scripting language or test automation tool

Preferred Qualifications:

  • Experience testing in multiple development contexts (Linux, AUTOSAR, Android)
  • Experience with ADAS, Ethernet interfaces and modules
  • Experience with 1-D physical modeling tools such as GT Power, AMESim and co-simulation tools
  • Experience with data acquisition and analysis tools such as ETAS-INCA
  • Experience with continuous integration, testing & deployment
  • Experience with model driven test in early development stages (functional mockups, PoC's)
  • Experience with dSPACE products
  • ISTQB certification
  1. Development of Virtual Test Platforms: Design and develop virtual test platforms (xIL) for next-generation vehicle controller testing, including the creation of virtual ECUs at various levels.
  2. Integration and Methodology: Work on the toolchain and methodology, integration, and both open-loop and closed-loop testing. Deploy these methodologies across different domains such as ADAS/AD, Energy, E-powertrain, Body, Cockpit, and Connected services.
  3. Collaboration and Agile Culture: Collaborate closely with software development and test engineers within agile teams from the early design phase through to validation. Challenge design and logical architecture with a proactive, test-first mindset.
  4. Troubleshooting and Automation:Set new benchmarks in virtualization technologies, troubleshoot and resolve issues. Automate vECU generation process to achieve end to end automation of xIL platform development and testing within CI/CD methodologies.
  5. Continuous Improvement: Advance continuous design verification, continuous testing, and deployment in highly virtualized environments.
  6. Agile Methods for Advanced Features: Design and apply agile methods for new and advanced features, including ADAS and EV systems.