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Propulsion System Design Engineer Jobs in Minnesota

System Design Engineer

Owatonna, MN · On-site

$99K - $116K/yr

Are you interested in becoming an Engineer at Bosch Owatonna? Click here to learn more. This position is responsible for the system level design of the ACS (Air-Conditioning Service) products. This ...

Are you interested in becoming an Engineer at Bosch Owatonna? Click here to learn more. This position is responsible for the system level design of the ACS (Air-Conditioning Service) products. This ...

Are you interested in becoming an Engineer at Bosch Owatonna? Click here to learn more. This position is responsible for the system level design of the ACS (Air-Conditioning Service) products. This ...

$166K - $249K/yr

Perform trade studies on advanced tactical propulsion systems concepts. * Serve as a voting member on design and testing engineering review boards. * Mentor and coach engineers to advance their ...

... system decomposition, and architecture development. * Experience applying Model-Based Systems ... Proficiency with engineering and design tools such as SysML, UML, and CAD. Shape the Future of ...

Develop complete and accurate AV system designs that align with customer requirements, project ... system design, engineering, or related technical roles * Strong knowledge of commercial AV ...

Experience designing hydraulic systems is a plus. * Experience designing electrical systems is a plus. * Knowledge of electrical design using SolidWorks Electrical is beneficial. * Basic programming ...

Experience designing hydraulic systems is a plus. * Experience designing electrical systems is a plus. * Knowledge of electrical design using SolidWorks Electrical is beneficial. * Basic programming ...

Structural Engineer

Saint Paul, MN · On-site

$100K - $150K/yr

Our team drives innovation in high-speed aerodynamics, propulsion systems, and mission-critical ... Design & Analysis - Develop or reuse facility and equipment design solutions to meet customer ...

Design Engineer

New York Mills, MN · On-site

$70K - $101K/yr

Lead and execute mechanical system design across fluid systems, structural components, and complex mechanisms, ensuring manufacturability and supplier readiness through 3D/2D modeling and validation.

Design Engineer

New York Mills, MN · On-site

$70K - $101K/yr

Lead and execute mechanical system design across fluid systems, structural components, and complex mechanisms, ensuring manufacturability and supplier readiness through 3D/2D modeling and validation.

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Propulsion System Design Engineer information

What are some common challenges faced by propulsion system design engineers when integrating new technologies into existing systems?

Propulsion System Design Engineers often encounter challenges when integrating new technologies, such as ensuring compatibility with existing subsystems, meeting stringent safety and regulatory standards, and managing weight or space constraints. Collaboration with cross-functional teams—including structural, thermal, and controls engineers—is essential to address these issues. Additionally, rapid advancements in materials and manufacturing techniques require engineers to stay updated and adapt designs efficiently, all while maintaining reliability and performance.

What are the key skills and qualifications needed to thrive as a propulsion system design engineer?

To thrive as a Propulsion System Design Engineer, you need a strong background in mechanical or aerospace engineering, advanced knowledge of thermodynamics, fluid dynamics, and materials science, usually supported by a relevant degree. Familiarity with CAD software, simulation tools (such as ANSYS or MATLAB), and industry standards is typically required. Strong problem-solving abilities, attention to detail, and effective teamwork and communication distinguish top performers in this field. These skills and qualities are vital for ensuring safe, innovative, and efficient propulsion system designs that meet rigorous technical and regulatory standards.

What does a propulsion system design engineer do?

A Propulsion System Design Engineer is responsible for designing, developing, and testing propulsion systems used in vehicles such as airplanes, rockets, or spacecraft. These engineers work on components like engines, turbines, and fuel systems to ensure they meet performance, safety, and efficiency standards. Their role often involves collaborating with multidisciplinary teams, conducting simulations, and overseeing prototype testing. They play a critical part in advancing technology and meeting regulatory requirements for propulsion systems.

What is the difference between Propulsion System Design Engineer vs Propulsion Test Engineer?

AspectPropulsion System Design EngineerPropulsion Test Engineer
Primary FocusDesigning and developing propulsion systemsTesting and validating propulsion systems
Skills & CertificationsMechanical/ aerospace engineering, CAD, system modelingTesting procedures, data analysis, troubleshooting
Work EnvironmentDesign labs, engineering offices, R&D facilitiesTest facilities, labs, on-site testing environments
Industry UsageUsed in aerospace, defense, space industriesUsed in aerospace, space, and research sectors

The Propulsion System Design Engineer focuses on creating and developing propulsion systems, while the Propulsion Test Engineer specializes in testing and validating these systems to ensure performance and safety. Both roles require engineering expertise but differ in their core responsibilities and work environments.

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What job categories do people searching Propulsion System Design Engineer jobs in Minnesota look for? The top searched job categories for Propulsion System Design Engineer jobs in Minnesota are:
What cities in Minnesota are hiring for Propulsion System Design Engineer jobs? Cities in Minnesota with the most Propulsion System Design Engineer job openings:

System Design Engineer

Jarraff Industries LLC

Saint Peter, MN • On-site

$94K - $103K/yr

Full-time

Posted 3 days ago

New


Job description

Description

Job Purpose:

The System Design Engineer is responsible for the design, development, integration, and validation of electro-hydraulic control systems, machine electrical architectures, and embedded controls software for off-highway equipment. This position owns system architecture from concept through production release. Works cross-functionally with mechanical, hydraulic, manufacturing, procurement and service teams to deliver robust, safe, and compliant machines.


Essential Functions:


  • System Architecture & Design: Defines and documents machine-level electrical, electro-hydraulic, and control system architecture, including controller selection, I/O allocation, CAN network maps, and power distribution.
  • Embedded Controls Software: Develops or communicates with outside suppliers the requirements for software, using applications such as Danfoss PLUS+1, and CODESYS (IEC 61131-3), C and C++ and Parker IQAN for machine control solutions.
  • CAN / J1939 Communication: Designs and configures CAN and SAE J1939 networks between ECUs, engines, transmissions, telematics, and displays.
  • 3D Integration & PLM: Uses 3D software such as Siemens NX to package electrical controls, harnesses, sensors in the machine model while managing revisions, BOMs, and release workflows in Siemens Teamcenter.
  • Wire Harness & Electrical Schematics: Designs production-ready wire harnesses using IGE-XAO and AutoCAD or DraftSight (schematics, from-to lists, connector tables, manufacturing drawings) and selects wire gauges, connectors, seals, and terminations suited to off-highway environments; coordinates with harness suppliers on design considerations.
  • System Troubleshooting & Validation: Leads troubleshooting of prototypes and training for production machines. Works with Engineering Technicians to development and write validation plans.
  • Field Support & Continuous Improvement: Supports testing, customer visits, and warranty investigations, analyzes test and field data and proposes design improvements, ECRs/ECOs.
  • Compliance & Documentation: Produces and maintains system requirements, FMEAs, , and technical files supporting SAE J1939, ISO/CE Machinery Regulation and EPA requirements.
  • Project Execution & Collaboration: Manages multiple development projects concurrently, works with outside suppliers, and other business units.
  • Tools & Training: Is fluent in Microsoft Office Suite and standard engineering computing tools; learns new development software and attends training as required to maintain competency.

Requirements

 Supervisory Responsibility:


This position has no direct supervisory responsibilities. This position reports to the Director of Engineering and R&D.


Work Environment:

This position operates in an office, engineering and shop environments. Occasional exposure to noise, hydraulic fluid, and outdoor field conditions are expected during prototype and field testing.


Physical Demands:

The physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this job. While performing the duties of this job, the employee is regularly required to talk and hear. The employee must be able to climb on and operate off-highway machines for testing and troubleshooting. This position requires the ability to occasionally lift up to 25 lbs.


Position Type and Expected Hours of Work:

This is a full-time position, and hours of work and days are Monday through Friday 7:00 a.m. to 4:30 p.m., 40 hours per week with some flexibility in hours is allowed with the possibility of some hybrid.


Required Education and Experience:

  • Bachelor's degree in engineering - Electrical, Mechanical, Mechatronics with 5+ years of experience, OR a 2-year Engineering/Technical degree with 10+ years of experience, OR 10+ years of combined experience in off-highway product development, system design/architecture, embedded controls, electro-hydraulic systems, and harness design.
  • Hands-on experience with Danfoss PLUS+1, Parker IQAN, and/or CODESYS, and working knowledge of embedded C/C++.
  • Working knowledge of SAE J1939 and CAN bus (physical and application layers), Siemens NX / Teamcenter, and IGE-XAO or equivalent harness design tools.
  • Proven ability to perform system-level troubleshooting on complex electro-hydraulic machines, with excellent technical communication across departments.
  • Microsoft Office tools


Other Duties:

Please note this job description is not designed to cover or contain a comprehensive listing of activities, duties, or responsibilities that are required of the employee for this job. Duties, responsibilities, and activities may change at any time with or without notice.