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Advanced Manufacturing Engineer II

Honeywell Aerospace

  • Minneapolis, MN
  • 4 days ago

    Highlights

    The Advanced Manufacturing Engineer II influences the planning and designing of manufacturing engineering processes by determining parts and tools needed by the team to achieve manufacturing goals according to product specification, for both existing and new processes/product technologies. Our team develops new or modifies current processes, defines process equipment requirements and specifications, and reviews processing techniques and methods applied in the manufacture, fabrication, and evaluation of Ring Laser Gyroscope and MEMS based inertial sensors and IMUs.

    Numbers & Facts

    LocationMinneapolis, MN
    IndustryTravel, Transportation and Tourism
    Company Size10,000 employees or more
    Year Founded1914
    Websitehttp://aerospace.honeywell.com/

    Description

    Join a team that applies its technical expertise and knowledge to ensure products are produced with high quality and efficiency. The Advanced Manufacturing Engineer II applies technical expertise with responsibility for product and process application to ensure product integrity manufacturing output while leading continuous improvements, working with both labs and factory operations.

    Our team develops new or modifies current processes, defines process equipment requirements and specifications, and reviews processing techniques and methods applied in the manufacture, fabrication, and evaluation of Ring Laser Gyroscope and MEMS based inertial sensors and IMUs. The Advanced Manufacturing Engineer II influences the planning and designing of manufacturing engineering processes by determining parts and tools needed by the team to achieve manufacturing goals according to product specification, for both existing and new processes/product technologies. This role strives to maximize efficiency by analyzing the layout of equipment, workflow, assembly methods, and work force utilization. The Advanced Manufacturing Engineer II supports daily production activities and drives producibility improvement projects in a challenging environment.

    You Must Have

    • Bachelor''s Degree in STEM field
    • 2+ years experience; manufacturing, test, fabrication, or assembly processes

    We Value

    • Product, process, manufacturing, or test engineering experience.
    • Ability to balance priorities in daily tasks and strategic projects.
    • Analytical and statistical problem solving skills.
    • Hands on work ethic. Initiative and ownership of responsibilities and actions.
    • Ability to partner and collaborate well with team members.
    • Quickly and accurately identifying subtle interrelationships and patterns among a variety of problems and issues (process and data correlation of cause/effect across value stream).
    • Conveying information with clarity and directness, ensuring the message is understood across diverse teams.
    • Knowledge of RCCA, Lean, Six Sigma, and FMEA tools and methodologies.

    Key Responsibilities

    • Provide test and manufacturing support for RLG and MEMS based inertial measurement units (IMUs).
    • Perform yield and performance data analysis to monitor process capability and product health trends.
    • Utilize CAMP, Lean, and Six-Sigma methodologies to govern engineering standard work practices.
    • Investigate and resolve technical issues, facilitate issue identification and analysis.
    • Develop improvements in product design and in the manufacturing and assembly processes for cost and cycle time reductions.
    • Assist development of new products.
    • Support knowledge for test equipment and preventative maintenance plans to maintain factory capacity and efficient product flow.
    • Facilitate a self-driven work force culture to achieve RTY, BIQ, COPQ, and other SQDIC goals.
    • Test products & software

    Key Responsibilities

    • Provide test and manufacturing support for RLG and MEMS based inertial measurement units (IMUs).
    • Perform yield and performance data analysis to monitor process capability and product health trends.
    • Utilize CAMP, Lean, and Six-Sigma methodologies to govern engineering standard work practices.
    • Investigate and resolve technical issues, facilitate issue identification and analysis.
    • Develop improvements in product design and in the manufacturing and assembly processes for cost and cycle time reductions.
    • Assist development of new products.
    • Support knowledge for test equipment and preventative maintenance plans to maintain factory capacity and efficient product flow.
    • Facilitate a self-driven work force culture to achieve RTY, BIQ, COPQ, and other SQDIC goals.
    • Test products & software

    About Company

    Honeywell Aerospace innovates and integrates thousands of products and services to advance and easily deliver safe, efficient, productive and comfortable experiences worldwide.


    Our History

    The first autopilot in 1914, Charles Lindbergh’s first successful solo flight across the Atlantic in 1927, Amelia Earhart’s landmark flight in 1932, and the world’s first sonic boom in 1947, were all made possible because of aviation technology developed by Honeywell and its legacy companies.

    During World War II, the groundbreaking cabin pressurization system developed by Garrett, Honeywell’s integrated C-1 autopilot, and the Norden bombsight made high-altitude bombing first feasible. Sperry instruments and navigation gear, Bendix electronics, carburetors, wheels, and brakes, and Grimes lighting systems were widely used on World War II aircraft. These innovations were later implemented successfully in civilian aircraft, helping the post-war boom in passenger travel.

    In the 1950’s, Honeywell Aerospace and its legacy companies changed the face of flying with the development of the first gas-turbine engines and the ring laser gyroscope, which dramatically changed guidance and navigation forever. Sperry brought computer technology to the cockpit with electronic flight instrument systems, flight management systems and other digital technology, and Bendix introduced the first commercial weather radar system.Today, Honeywell Aerospace continues to innovate in the frontier of flight safety with traffic alert and collision avoidance technologies, the AlliedSignal Enhanced Ground Proximity Warning System, and systems that help pilots avoid severe weather and hazards such as lightning and wind shear. We at Honeywell Aerospace are proud of our contributions to aviation history, but we’re just as proud of the history we’re making today.

    We have created the state-of-the-art integrated Aircraft Environment Surveillance System for the Airbus A380, and our advanced flight management, power distribution, pneumatic, and landing systems will help A380 operators reach new heights of performance and efficiency.

    We are a leading supplier of products and systems for Boeing commercial airplanes, and our integrated avionics system for the Boeing 777 sets a new technology and reliability standard. Today, we are part of the team working to define technology concepts for the next Boeing airplane, the super-efficient 777.

    The general, experimental, and light business aviation industries also turn to our respected Bendix/King range of communication and navigation avionics, weather radars, flight controls, flight information services, and other products and services that help make flying safer, more affordable, and more enjoyable.

    Honeywell Aerospace continues to work to improve the capabilities of military forces, developing systems that power unmanned vehicles, avionics for jet fighters, weapon sensors for precision targeting, and upgrades that extend the lives of proven aircraft and vehicles. We’re part of the Lockheed Martin team working on the Joint Strike Fighter program, and we’re proposing a wide range of systems for the Army’s Future Combat System.

    For more than 40 years, Honeywell technology has helped with the exploration and creation of opportunities in space. Our products have been integral to Neil Armstrong’s first step on the moon, and to every manned mission to space since. Today, the Space Shuttle is equipped with Honeywell’s Multifunction Electronic Display Subsystem, and we’re reaching into the future of space technology, with our work for the anticipated shuttle successor, the Orbital Space Plane, the International Space Station, and our contributions toward creating a permanent orbiting scientific laboratory and workspace.

    As powered flight begins its second century, Honeywell Aerospace continues to make history with leading technology, reliable products and systems, superior service, and dedicated employees. The contributions of Honeywell, its legacy companies, and five generations of employees, have advanced the science of aviation to make flying the world’s safest form of transportation, while helping to protect our nation and explore the universe. We look forward to continuing our long tradition of developing and delivering innovative aviation systems that meet the current, and anticipate the future, needs of the customer.

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