Overview
On Site
Full Time
Skills
Military
IPT
Data Architecture
Backbone.js
Systems Architecture
Cost Reduction
SysML
Modeling
MagicDraw
System Integration
Issue Resolution
Enterprise Architecture
IBM
Rhapsody
MAGIC
Content Management
Configuration Management
Change Management
Apache Subversion
IBM Rational ClearCase
Git
Dimensional Modeling
Team Leadership
Earned Value Management
Embedded Systems
Leadership
Reporting
Communication
ARINC 429
AFDX
Aerospace
Electrical Engineering
Software Engineering
Computer Engineering
Computer Science
Mechanical Engineering
Avionics
Network
Software Configuration
Computer Hardware
Interfaces
Management
Security Clearance
Health Insurance
Pharmacy
Aviation
Innovation
Job Details
We're more than aviation experts, we're pioneers. We challenge what's possible. From breaking the sound barrier to advanced tiltrotor systems. Today, Bell is shaping the future of aviation through specialized engineering. And we want you.
The Future Long Range Assault Aircraft (FLRAA) is the Premier Vertical Lift military program in the world. Bell's FLRAA aircraft will become the Army's primary assault aircraft for the next 30 years, sunsetting UH-60 Blackhawk helicopters and advancing the Army's assault capabilities. The FLRAA program is utilizing the latest in cutting edge technology to expand the United States Army's tactical advantage in future conflicts. The Bell FLRAA team seeks the top engineering talents from around the industry to design, develop, and deliver the world's next-generation military aircraft.
Core Avionics (IPT), Network Integration Modeling - Lead Engineer
Within the FLRAA Core Avionics Integrated Product Team (IPT), the Network Integration Modeling Lead Engineer is responsible for design, modeling and integrating the data architecture in models for the FLRAA program. The models are used by the aircraft flight computers to manage and share data across the aircraft digital backbone.
Developing, creating and leading aircraft network interface models is the primary responsibility including software configuration, hardware configurations, and system interfaces.
Integrated Modular Avionics (IMA) is an avionics system architecture that replaces multiple, separate processors and line replaceable units (LRUs) with fewer, more centralized processing units. This approach leads to weight reduction and cost savings, making it a popular choice in modern aircraft, including FLRAA.
What you will be doing as the Network Integration Modeling - Lead Engineer:
Skills You Bring To This Role :
What you need to be successful:
What we offer you in return:
It's time to make your mark on the future of aviation. Join us on this mission, and let's make history together.
We are on a journey to amplify innovation, cultivate purpose and bridge experiences by fostering a culture that is driven by unique perspectives, voices and values.
The Future Long Range Assault Aircraft (FLRAA) is the Premier Vertical Lift military program in the world. Bell's FLRAA aircraft will become the Army's primary assault aircraft for the next 30 years, sunsetting UH-60 Blackhawk helicopters and advancing the Army's assault capabilities. The FLRAA program is utilizing the latest in cutting edge technology to expand the United States Army's tactical advantage in future conflicts. The Bell FLRAA team seeks the top engineering talents from around the industry to design, develop, and deliver the world's next-generation military aircraft.
Core Avionics (IPT), Network Integration Modeling - Lead Engineer
Within the FLRAA Core Avionics Integrated Product Team (IPT), the Network Integration Modeling Lead Engineer is responsible for design, modeling and integrating the data architecture in models for the FLRAA program. The models are used by the aircraft flight computers to manage and share data across the aircraft digital backbone.
Developing, creating and leading aircraft network interface models is the primary responsibility including software configuration, hardware configurations, and system interfaces.
Integrated Modular Avionics (IMA) is an avionics system architecture that replaces multiple, separate processors and line replaceable units (LRUs) with fewer, more centralized processing units. This approach leads to weight reduction and cost savings, making it a popular choice in modern aircraft, including FLRAA.
What you will be doing as the Network Integration Modeling - Lead Engineer:
- SysML Modeling in MagicDraw/Cameo.
- Developing, creating, and leading Aircraft Network, health awareness, and compute configurations.
- Leading team members in the development of incremental lab and flight test Network Integration Models.
- Working with program IPTs and Suppliers to iterate on data design.
- Working with suppliers on network integration tooling development.
- Utilize data/functional architecture models to integrate software and hardware.
- Validate and verify system data paths.
- Troubleshoot and resolve system integration/verification issues.
- Coordinate with Internal and External IPTs, suppliers, and peers to generate and execute projects/design plans and reviews.
- Manage and coordinate issues, problem reports and change requests to closure.
- Coordinate design changes and deliveries with Safety, Security and Certification organizations.
- Ensure timely delivery of systems data, systems requirements, integrated validation/verification activities, and issue resolution.
- Escalate issues that need additional engineering or business leadership assistance in a timely manner.
Skills You Bring To This Role :
- Experience with MBSE tools (eg EA Sparx, IBM Rhapsody, Magic Draw) and CM tools (eg SVN, Clearcase, git, Dimensions)
- Experience leading teams to completion of projects.
- Reporting and tracking of earned value/metrics.
- Experience in creating integrated schedules
- Experience working in an embedded SIL or Avionics Lab environment.
- Able to communicate directly with senior leadership inside and outside the company.
- Self-motivated and able to track and report performance to cost and schedule.
- Excellent interpersonal and communication skills (written and verbal)
- Experience working with ARINC 429, MIL-STD-1553, CAN, AFDX and or TSN is a plus
- Experience with Future Airborne Capability Environment (FACE) is a plus
What you need to be successful:
- Bachelor's degree in aerospace engineering, Electrical Engineering, Software Engineering, Computer Engineering, or Computer Science is required. Mechanical or Other Engineering degrees may be considered with applicable experience.
- At least 14+ years of experience, especially in Integrated Modular Avionics (IMA) including experience developing, creating and leading aircraft network interface models including software configuration, hardware configurations, and system interfaces.
- Experience in developing experience managing or designing within Digital Engineering and MBSE
- Ability to gain and maintain US Secret Clearance
What we offer you in return:
- You'll be off every other Friday with our 9/80 work schedule
- 80 hours of Personal Time Off (PTO)
- 120 hours Vacation time
- 12-13 paid holidays per year
- 6 weeks parental leave
- Tuition reimbursement
- Competitive salary
- Comprehensive health insurance
- On-site clinic, pharmacy, physical therapy, and licensed counselor
- Access to more than 11 Employee Resource Groups
- And so much more
It's time to make your mark on the future of aviation. Join us on this mission, and let's make history together.
We are on a journey to amplify innovation, cultivate purpose and bridge experiences by fostering a culture that is driven by unique perspectives, voices and values.
Employers have access to artificial intelligence language tools (“AI”) that help generate and enhance job descriptions and AI may have been used to create this description. The position description has been reviewed for accuracy and Dice believes it to correctly reflect the job opportunity.