1

Brake Engineer Jobs in Rochester Hills, MI (NOW HIRING)

... in brake controls using either Model Based coding including MATLAB, C, or C++. Help define ... Bachelor's degree in Electronics Engineering, Electrical Engineering, Mechanical Engineering, or ...

... in brake controls using either Model Based coding including MATLAB, C, or C++. Help define ... Bachelor's degree in Electronics Engineering, Electrical Engineering, Mechanical Engineering, or ...

Brake system sizing experience is a plus. Knowledge, Skills and Abilities: * Strong analytical and ... Visual Basic programming and macro creation a plus * Proficient in MS Project * Strong ...

Sr. Algorithm Engineer

Troy, MI

$99K - $136K/yr

Senior Algorithm Engineer Why join Aptiv? You'll have the opportunity to work on cutting-edge ... Brake Assist, and Lane Keeping systems widely available to consumers today; and we continue to ...

Sr. Algorithm Engineer

Troy, MI ยท On-site

$99K - $136K/yr

Senior Algorithm Engineer Why join Aptiv? You'll have the opportunity to work on cutting-edge ... Brake Assist, and Lane Keeping systems widely available to consumers today; and we continue to ...

Our engineers support latest ADAS features such as Pre Collision Assist ( PCA, Blue Cruise ( BC ... Vehicle Dynamics, Brake, Steering or powertrain) * Basic understanding of Vehicle network (CAN, CAN ...

Our engineers support latest ADAS features such as Pre Collision Assist ( PCA, Blue Cruise ( BC ... Vehicle Dynamics, Brake, Steering or powertrain) * Basic understanding of Vehicle network (CAN, CAN ...

Showing results 41-60

Brake Engineer information

What are some typical challenges brake engineers face when collaborating with cross-functional teams during vehicle development?

Brake Engineers often work closely with design, manufacturing, and testing teams, which can present challenges in aligning performance goals with practical constraints. For example, balancing braking performance with weight, cost, and manufacturability requires effective communication and compromise. Additionally, coordinating timelines and integrating feedback from multiple stakeholders is crucial to ensure the final product meets safety and regulatory standards. Building strong relationships and maintaining clear documentation can help overcome these common hurdles.

What are the key skills and qualifications needed to thrive as a brake engineer, and why are they important?

To thrive as a Brake Engineer, you need a solid background in mechanical engineering, automotive systems, and materials science, typically supported by a relevant engineering degree. Familiarity with CAD software, simulation tools like MATLAB or ANSYS, and industry standards such as ISO/TS 16949 is commonly required. Strong problem-solving abilities, attention to detail, and effective communication skills help you collaborate with multidisciplinary teams and address complex design challenges. These skills ensure the development of safe, high-performing braking systems that meet rigorous safety and quality standards in the automotive industry.

What is the difference between Brake Engineer vs Brake Technician?

AspectBrake EngineerBrake Technician
Required CredentialsBachelor's degree in Mechanical or Automotive EngineeringHigh school diploma or technical certification
Work EnvironmentDesign labs, R&D facilities, manufacturing plantsRepair shops, maintenance facilities, on-site vehicle service
Industry UsageAutomotive, aerospace, heavy machinery manufacturingAutomotive repair, service centers, fleet maintenance

Brake Engineers focus on designing and developing braking systems, requiring engineering degrees and working in labs or design environments. Brake Technicians perform maintenance and repairs, working directly on vehicles in repair shops. Both roles are essential in the automotive industry but differ in education, responsibilities, and work settings.

What does a brake engineer do?

A Brake Engineer is responsible for designing, testing, and improving braking systems for vehicles such as cars, trucks, and trains. They work to ensure that braking systems are safe, reliable, and meet regulatory standards. Brake Engineers collaborate with other automotive engineers to integrate braking systems with other vehicle components, conduct simulations, analyze test data, and troubleshoot issues. Their work is critical in enhancing vehicle safety and performance.
What job categories do people searching Brake Engineer jobs in Rochester Hills, MI look for? The top searched job categories for Brake Engineer jobs in Rochester Hills, MI are:
What cities near Rochester Hills, MI are hiring for Brake Engineer jobs? Cities near Rochester Hills, MI with the most Brake Engineer job openings:
Infographic showing various Brake Engineer job openings in Rochester Hills, MI as of August 2026, with employment types broken down into 83% Full Time, 12% Part Time, and 5% Contract. Highlights an 86% Physical, 5% Hybrid, and 9% Remote job distribution.

Senior Model Based Controls Engineer

LHP Engineering Solutions

Pontiac, MI โ€ข On-site

$96K - $127K/yr

Full-time

Posted 29 days ago


Job description

Job Location: 2800 Centerpoint Parkway, Pontiac, Michigan 48341

Duties

LHP Engineering Solutions LLC seeks a Senior Model Based Controls Engineer in Pontiac MI. Telecommuting permitted 100% of time. Duties: apply quality assurance techniques; compile data and define changes required in software and features; conduct software vulnerability assessments of systems; contribute to the delivery of innovative, flexible, and integrated solutions to meet customer's changing business needs; coordinate input from internal and external customers to understand needs and perceptions; perform root cause analysis, error correction, and functional and risk analysis of system level problems (5 Whys, Fishbone); represent the development team in multi-focused team meetings; work with cross-functional teams to architect and implement complex solutions; confirm that new software features integrate with control systems (sensors, electronic control units and actuators that manage vehicle motion, stability, and safety, including propulsion, braking and steering) to meet functionality requirements; controls (steering, braking, acceleration, gear shifting, lighting, climate control, transmission) and model requirements definition, controls architecting (shifting from distributed electronic control units to centralized and zonal architecture to reduce wiring complexity while enhancing computing power for software-defined vehicles), design, analysis, implementation and verification using Model-in-the-Loop (MIL), Software-in-the-Loop (SIL) and Hardware-in-the-Loop (HIL) techniques consistent with design requirements; design and provide technical documents for developed controls; design, model and integrate software functionalities in a real-time embedded environment; develop and analyze requirements; develop controls solutions (electronic systems and softwaresuch as powertrain control units, anti-lock brake systems and Advanced Driver-Assistance Systems) using model-based definition techniques; ensure process compliance and configuration management; participate in software reviews and provide technical support, guidance and collaboration for software and hardware implementation activities; work with product development teams to design and develop control algorithms.

Requirements

Bachelor's degree (or foreign equivalent degree) in mechanical engineering, electrical engineering, computer engineering, aerospace engineering, or related field, plus 3 years of experience in any role in which one or more of skills listed below were used or developed. Included within the 3 years of experience, must have experience in all of the following: autocode generation (RTW, Target Link, Embedded Coder, or ADI Beacon); configuration management tools (IBM Rational ClearQuest, IBM Team Concert, IBM Jazz Team Server, or GitLab); Eclipse, C, or C++ programming languages; modelling and simulation using MATLAB, Simulink, Stateflow, LabView or Modelica; version control and requirements management software tools (RTC, DNG, DOORS, Jira, PTC Integrity, or GIT); scripting language (Python or Mscript); verification and validation tools (ETAS INCA, CANalyzer, or CANape); fixed point and double precision data type usage and autocode generation impact; MAAB, MISRA and ISO26262 standards; MBD design guidelines.