Engine Systems Integration Engineer (Hybrid)
Job description
Date Posted:
2023-05-01Country:
United States of AmericaLocation:
PW109: West Palm Beach 17900 Beeline Highway, West Palm Beach, FL, 33410 USAPosition Role Type:
UnspecifiedPratt & Whitney is working to once again transform the future of flight—designing, building and servicing engines unlike any the world has ever seen. And because transformation begins from within, we’re seeking the people to drive it. So, calling all curious.
Come ready to explore and you’ll find a place where your talent takes flight—beyond the borders of title, a country or your comfort zone. Bring your passion and commitment and we’ll welcome you into a tight-knit team that takes our mission personally. Channel your drive to make a difference into shaping an organization and an industry that’s evolving fast to the future.
Innovation through diversity of thought. At Pratt & Whitney, we believe diversity of thought enables creativity, innovation, and a foundation for inclusion. By fostering an inclusive culture, we accept a shared accountability and responsibility to recognize, sponsor, coach, hire and promote talent equally. We welcome our employees to be their whole - best - selves at work because trust, respect and integrity, are a part of our DNA.
At Pratt & Whitney, the difference you make is on display every day. Just look up. Are you ready to go beyond?
Department Overview:
Pratt & Whitney Engine Design & Systems Integration (EDSI) is a dynamic engineering organization focused on the development and certification of military, commercial and industrial gas turbine engines. EDSI is responsible for overall engine system definition and management. This includes Systems Analysis and Functional Integration (SAFI) which is responsible for engine system performance and operability as well as functional requirements for installations and control systems. Pratt & Whitney is seeking a Systems Analysis and Functional Integration (SAFI) engineer supporting Military Auxiliary Power Units (APUs) and small expendable propulsion engine programs.
Responsibilities:
- Engine performance, operability, and modeling analysis
- Engine test planning, execution, and data analysis
- System level project engineering
- Work with teams from several different disciplines and programs
- Develop and clearly communicate system level information to drive decisions
- Coordinate technical resolution of system level issues with airframers
Basic Qualifications:
- Bachelor's Degree in Engineering
- 2+ years of prior relevant engineering experience
- 10% of Travel
- US Citizenship required
- Ability to obtain Security Clearance
Preferred Qualifications:
- Competent in gas turbine performance, operability and gas turbine test analysis desired
- Knowledge of NPSS, C++ and Fortran related programming language is preferred
- Experience in both Auxiliary Power Unit (APU) gas turbine and small expendable propulsion engines is desirable
- Advanced knowledge of test analysis integration
- Knowledge of control logic and control schedules generation is a plus
- Experience in dealing with internal and external customers
What is my role type?
In addition to transforming the future of flight, we are also transforming how and where we work. We’ve introduced role types to help you understand how you will operate in our blended work environment. This role is:
Hybrid: Employees who are working in Hybrid roles will work regularly both onsite and offsite. This means that responsibilities of the job need to be performed onsite on a regular basis.
Candidates will learn more about role type and current site status throughout the recruiting process. For onsite and hybrid roles, commuting to and from the assigned site is the employee’s personal responsibility.
Raytheon Technologies is An Equal Opportunity/Affirmative Action Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability or veteran status, age or any other federally protected class.
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