1

Model Based System Engineer Jobs in Appleton, WI

... systems. * Document all design activity with CAD models, design drawings, analysis results, and ... Review continuous improvement cycles of production vehicles and warranty improvement based on ...

Mechanical Engineer

Winneconne, WI · On-site

$80K - $95K/yr

Model complex parts and assemblies in SolidWorks, ensuring they meet functional, performance, and ... Comfort working with electro-mechanical products and systems in an R&D or product development ...

Design Engineer

Oshkosh, WI · On-site

$70K - $75K/yr

Fully Integrated ERP Business Operating System, EDI Capable * Full Metal Fabrication Engineering ... Strong understanding of mechanical design principles and solid modeling techniques. * Ability to ...

Sr. Engineer

De Pere, WI · On-site

$100K - $138K/yr

As a Senior HVAC Designer/Engineer, you will serve as a technical leader within the Building ... Design and layout both air and water-side systems in working BIM models * Coordinate with other ...

Quality Systems Engineer

Neenah, WI · On-site

$63K - $95K/yr

The salary offered within this range will be based upon the geographic location, work experience ... Assists to communicate quality system and regulatory requirements with internal customers.

Showing results 41-60

Model Based System Engineer information

See Appleton, WI salary details

$52.2K

$124.1K

$162.9K

How much do model based system engineer jobs pay per year?

As of Sep 13, 2026, the average yearly pay for model based system engineer in Appleton, WI is $124,127.00, according to ZipRecruiter salary data. Most workers in this role earn between $95,600.00 and $153,200.00 per year, depending on experience, location, and employer.

What is a model based system engineer?

A Model Based System Engineer (MBSE) is a professional who uses modeling techniques and tools to design, analyze, and manage complex systems throughout their lifecycle. Instead of relying solely on traditional document-based methods, MBSE professionals create digital models that represent the structure, behavior, and requirements of systems. This approach helps improve understanding, communication, and traceability among stakeholders, leading to more efficient and reliable system development. MBSE is commonly used in industries like aerospace, automotive, defense, and healthcare to manage complex engineering projects.

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

To thrive as a Model Based System Engineer, you need a solid background in systems engineering principles, requirements analysis, and modeling languages like SysML, often supported by a degree in engineering or computer science. Proficiency with modeling tools such as IBM Rhapsody, MagicDraw, or MATLAB/Simulink, and familiarity with systems engineering standards like INCOSE certification, are typically required. Strong analytical thinking, effective communication, and problem-solving abilities are key soft skills in this role. These skills ensure efficient system design, clear stakeholder communication, and successful integration of complex systems in multidisciplinary environments.

How does a model based system engineer typically collaborate with cross-functional teams during a project lifecycle?

Model Based System Engineers work closely with multidisciplinary teams, including software developers, hardware engineers, and project managers, to ensure system models accurately reflect requirements and constraints. They often facilitate communication by translating complex system behaviors into visual models that are easily understood by all stakeholders. Throughout the project lifecycle, they participate in design reviews, update models based on team feedback, and help validate that the final system meets its intended functionality. This collaborative approach helps reduce misunderstandings and streamlines the integration of various subsystems.

What is the difference between Model Based System Engineer vs Systems Engineer?

AspectModel Based System EngineerSystems Engineer
CredentialsTypically requires systems engineering certifications, knowledge of modeling toolsOften holds a bachelor's or master's in engineering, with certifications like INCOSE
Work EnvironmentFocuses on system modeling, simulation, and design using specialized toolsInvolves system integration, testing, and requirements management
Industry UsageCommon in aerospace, defense, automotive, and complex systems industriesWidely used across IT, manufacturing, and engineering sectors

While both roles require strong engineering backgrounds, Model Based System Engineers specialize in creating and analyzing system models to optimize design, whereas Systems Engineers focus on integrating and managing entire systems throughout their lifecycle.

Infographic showing various Model Based System Engineer job openings in Appleton, WI as of August 2026, with employment types broken down into 1% As Needed, 77% Full Time, 15% Part Time, and 7% Contract. Highlights an 87% Physical, 2% Hybrid, and 11% Remote job distribution, with an average salary of $124,127 per year, or $59.7 per hour.

Senior Product Security Engineer

Menasha, WI • On-site

Faith Technologies
Construction • 1 - 5K employees

$117K - $160K/yr

Full-time

Re-posted 22 days ago


Faith Technologies rating

8.1

Company rating: 8.1 out of 10

Based on 55 frontline employees who took The Breakroom Quiz


Job description

You've discovered something special. A company that cares. Cares about leading the way in construction, engineering, manufacturing and renewable energy. Cares about redefining how energy is designed, applied and consumed. Cares about thoughtfully growing to meet market demands. And as "one of the Healthiest 100 Workplaces in America" is focused on the mind/body/soul of team members through our Culture of Care.

The Senior Product Security Engineer leads the securitydesignand governance of our Industrial Internet of Things (IIoT)and Grid connectedproduct portfolio. Reporting to theCybersecurity Manager, this role is the primary technical authority forIIoTproduct security across the entire device lifecycle - from early design through field deployment and ongoing operation.

This is a deeply technical role focused on hardware and embedded systems security, OT/IT convergence, and the application of industrial security standards. Day-to-day development andDevSecOpsexecution (code scanning, firmware management, CI/CD pipeline tooling) is owned by the Product Security Engineer II; the Senior Engineeroperatesat the architectural, standards, and cross-functional leadership level.

MINIMUM REQUIREMENTS

Education: Bachelor's degree or equivalent experience in Information Security, Electrical Engineering, Computer Engineering, ora relatedtechnical field.

Experience: 5+ years of dedicated experience in product security, embedded/IIoTsecurity,

or

Education: Industry-recognized security certifications preferred but notrequired(e.g., GICSP, CISSP, ISA/IEC 62443 Cybersecurity Certificate Program, CSSA).

Experience: OT/ICS security, with at least 2 years ina senioror lead capacity and

Travel: 5-10%

Work Schedule: Typical work hours are between 7:00 a.m. and 5:00 p.m. Monday - Friday. However, work may be performed at any time on any day of the week to meet business needs.

KEY RESPONSIBILITIES

IIoTSecurity Architecture and Standards

  • Security Architecture: Define and own the security architecture for connectedIIoTproducts, including device identity frameworks (PKI/certificate management), secure boot chains, cryptographic key management, and hardware root of trust.
  • Industrial Standards Leadership:Establishand enforce security design requirements based on applicable standards and frameworks (e.g., IEC 62443, UL 2900, NERC CIP, NIST SP 800-82, NIST CSF) across product lines.
  • OT/IT Convergence: Design security boundaries and communication controls for environments where operational technology (OT) interfaces with enterprise IT systems, ensuring defense-in-depth across both layers.
  • Protocol and Interface Security: Evaluate andprovidesecurity guidance on industrial communication protocols used in energy and grid applications (e.g., IEC 61850, DNP3, Modbus, CAN bus, GOOSE/Sampled Values).

Threat Modeling and Risk Management

  • Lead Threat Modeling: Conduct and lead structured threat modeling exercises (e.g., STRIDE, PASTA) for newIIoTproduct initiatives and significant feature changes, translating identified risks into actionable design controls.
  • Risk Prioritization: Assess and prioritize security risks across fielded and in-development device portfolios based on exploitability, potential impact to grid operations or physical safety, and business criticality.
  • Vulnerability Coordination: Serve as the technical lead for coordinating responses to security vulnerabilitiesidentifiedin fieldedIIoTproducts, including working with Product, Engineering, and customers on disclosure and remediation timelines.
  • Supply Chain Security: Evaluate hardwarecomponentand third-party software supply chain risks, providing security requirements for procurement and vendor selection of embedded components.

Governance, Consultation, and Leadership

  • Security SME: Act as the primary subject matter expert forIIoTand OT product security, providing high-context technical consultation to product architects, engineering leads, and executive leadership.
  • Security Standards Ownership: Own the product security standards, policies, and design review processes applicable toIIoTdevices, ensuring teams have clear, actionable requirements before development begins.
  • Cross-Functional Collaboration: Partner with Hardware, Firmware, Systems Engineering, and Product Management teams to embed security requirements early in the product development process without creating unnecessary friction.
  • Incident Leadership: Serve as the senior technical contributor during high-severity security incidents involving fieldedIIoTproducts, leading root cause analysis and driving architectural improvements to prevent recurrence.
  • Public Disclosure and Advisory: Coordinate with Threat Intelligence and engineering teams to documentidentifiedvulnerabilities andassistin drafting CVEs and public security advisories following successful remediation.

TechnicalComponents

  • IIoTand Embedded Security:Demonstratedexpertisein securing embedded andIIoTdevices, including secure boot, hardware security modules (HSMs), trusted execution environments (TEEs), and firmware security architecture.
  • Industrial Protocols: Working knowledge of industrial communication protocols common in energy and grid applications (IEC 61850, DNP3, Modbus, CAN bus) and their associated security considerations.
  • OT/ICS Security: Strong understanding of OT and ICS security principles, network segmentation strategies (e.g., Purdue Model, IEC 62443zonesand conduits), and the unique threat landscape of connected energy infrastructure.
  • PKI and Cryptography: Solid understanding of public key infrastructure, certificate lifecycle management for device identity, and applied cryptography as it relates to constrained embedded environments.
  • Security Standards: Deep familiarity with IEC 62443, UL 2900, NERC CIP, and NIST SP 800-82; ability to translate standards requirements into concrete, enforceable product security controls.
  • Threat Modeling: Proven experience leading structured threat modeling sessions for hardware/firmware products in OT or energy environments.
  • Performs other related duties as required and assigned.

The job description and responsibilities described are intended to provide guidelines for job expectations and the employee's ability to perform the position described. It is not intended to be construed as an exhaustive list of all functions, responsibilities, skills, and abilities. Additional functions and requirements may be assigned by supervisors as deemed appropriate.

How Does FTI Give YOU the Chance to Thrive?

If you're energized by new challenges, FTI provides you with many opportunities. Joining FTI opens doors to redefine what's possible for your future.

Once you're a team member, you're supported and provided with the knowledge and resources to achieve your career goals with FTI. You're officially in the driver's seat of your career, and FTI's career development and continued education programs give you opportunities to position yourself for success.

FTI is a "merit to the core" organization. We recognize and reward top performers, offering competitive, merit-based compensation, career path development and a flexible and robust benefits package.

Benefits are the Game-Changer

We provide industry-leading benefits as an investment in the lives of team members and their families.You're invited to review the full list of FTI benefits available to regular/full-time team members. Start here. Grow here. Succeed here. If you're ready to learn more about your career with FTI, apply today!

Faith Technologies, Inc. is an Equal Opportunity Employer - veterans/disabled.

Employment is contingent upon successfully passing a background and drug test


What Faith Technologies employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom