Level 3 Communications, Inc

Associate, Mechanical Engineer

Level 3 Communications, Inc$59K — $110K *
Aerospace & Defense
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • Bachelor's Degree in Mechanical Engineering or relevant field, recent graduates accepted.
  • Proficiency in finite-element modeling and analysis tools (e.g., MATLAB, Simulink, C/C++).
  • Knowledge of astrodynamics principles relevant to remote sensing in space.
  • Familiarity with image quality impacts regarding line-of-sight in remote sensing systems.
  • Preferred experience in real-time control implementation.

Responsibilities

  • Apply control theory concepts for electro-mechanical and optical-mechanical systems.
  • Develop models using state-variable equations, transfer functions, and block diagrams.
  • Conduct structural dynamics and vibration analysis for multi-degree-of-freedom systems.
  • Utilize computational methods including finite element analysis and modal testing.
  • Evaluate system-level optical performance for characteristics like pointing and jitter.
  • Implement digital signal processing techniques suited for time and frequency-domain operations.
  • Document system specifications and performance predictions.

Benefits

  • Relocation assistance available for qualified applicants.
  • Every other Friday off (9/80 work schedule).
  • Health and disability insurance.
  • 401(k) match and flexible spending accounts.
  • Education assistance and parental leave.
  • Paid time off and company-paid holidays.
Full Job Description
Job Title: Specialist, Mechanical Engineer - Dynamics Analyst (Space Optical Systems)

Job Code: 37544

Job Location: Rochester, NY

Job Schedule: 9/80 (Every other Friday off!)

Relocation: Relocation assistance is available for qualified applicants

Job Description: Dynamics Analyst (GN& C/ACS/Controls/LOS/Jitter)

L3Harris is seeking a highly skilled Dynamics Analyst to perform design, analysis, modeling, and testing of high-performance controls for electro-mechanical and optical-mechanical systems with focus on Attitude Control Systems, Controls, LOS/Jitter, and/or dynamic testing. The analyst will use their experience to model, analyze and simulate dynamic systems, utilizing methodologies for a variety of dynamic systems, but with a primary focus on system-level interdisciplinary electro-mechanical optical systems. This includes, but is not limited to, actuated optical systems, high bandwidth steering mirror control, multidisciplinary system modeling and characterization, image stabilization, and closed loop state estimation.

Job responsibilities include:
  • Control Theory: Applying classical and modern control theory concepts such as stability, feedback control, and robustness. Utilizing analysis tools like Bode, Nyquist, Nichols, pole-zero plots, root-locus, and frequency-response analysis.
  • Control Systems: Conducting analysis, synthesis, development, and implementation of feedback control systems. This includes developing models as state-variable equations, transfer functions, and/or block diagrams to determine dynamic systems characteristics, and analyzing both time and frequency responses.
  • Structural Dynamics and Vibration Analysis: Performing structural dynamics and vibration analysis, including random vibration and acoustic analysis, design, measurement, and computation of multi-degree-of-freedom systems.
  • Computational Methods: Employing finite-element-based computational methods, dynamic testing methods, and modal analysis (both analytical and experimental).
  • Optical Performance Analysis: Evaluating system-level optical performance related to pointing, smear, and jitter.
  • Digital Signal Processing: Applying fundamental concepts and techniques of digital signal processing theory and its applications, including discrete-time signals, systems, and modern digital processing algorithms for both time-domain and frequency-domain methods.


Essential Functions:
  • Model control systems as part of larger system simulations for electro-mechanical and opto-mechanical hardware
  • Line-of-sight (LOS) control, attitude control, servo control, Kalman filtering
  • Algorithm development, implementation, flight software development, mission simulation, verification and validation
  • Multidisciplinary (hardware, electronics, and software) integrated system development and operation
  • Dynamic stabilization\isolation, passive vibration control, active vibration control
  • Model characterization and performance predictions\evaluations
  • Modal\andom Vibration\Acoustic\Shock model predictions, testing and correlation
  • Definition and documentation of system specifications


Qualifications:
  • To be eligible, applicants must be pursuing a Bachelor's Degree in Mechanical Engineering or relevant degree or have completed their Bachelor's degree within the last 12 months, regardless of age.


Preferred Additional Skills:
  • Active TS/SCI Clearance is preferred but not required
  • Proficient in FE modeling and analysis tools, MATLAB, Simulink, C/C++
  • Knowledge of astrodynamics principles relevant to remote sensing. Familiarity with space mission analysis and design impacts on remote sensing.
  • Familiarity with key elements of modeling the end-to-end imaging chain of remote sensing systems, with particular focus on the LOS impacts on image quality.
  • Preferred experience with real-time control implementation, and embedded C/C++ programming.


In compliance with pay transparency requirements, the salary range for this role in Colorado state, Hawaii, Illinois, Maryland, Minnesota, New York state, and Vermont is $59,000.00 - $110,000. This is not a guarantee of compensation or salary, as final offer amount may vary based on factors including but not limited to experience and geographic location. L3Harris also offers a variety of benefits, including health and disability insurance, 401(k) match, flexible spending accounts, EAP, education assistance, parental leave, paid time off, and company-paid holidays. The specific programs and options available to an employee may vary depending on date of hire, schedule type, and the applicability of collective bargaining agreements.

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