About this role
<p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><strong>Job Title: Specialist, Mechanical Engineer - Dynamics Analyst (Space Optical Systems)</strong></span></p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><strong>Job Code: 37544</strong></span></p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><strong>Job Location: Rochester NY or Wilmington, MA</strong></span></p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><strong>Job Schedule: 9/80 (Every other Friday off!)</strong></span></p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><strong>Relocation: Relocation assistance is available for qualified applicants</strong></span></p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><strong> </strong></span></p> <p> </p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><strong>Job Description: </strong>Dynamics Analyst (GN&C/ACS/Controls/LOS/Jitter)</span></p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">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.</span></p> <p> </p> <p> </p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><strong>Job responsibilities include:</strong></span></p> <ul> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">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.</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">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.</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">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.</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Computational Methods: Employing finite-element-based computational methods, dynamic testing methods, and modal analysis (both analytical and experimental).</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Optical Performance Analysis: Evaluating system-level optical performance related to pointing, smear, and jitter.</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">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.</span></li> </ul> <p> </p> <p> </p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><strong>Essential Functions:</strong></span></p> <ul> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Model control systems as part of larger system simulations for electro-mechanical and opto-mechanical hardware</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Line-of-sight (LOS) control, attitude control, servo control, Kalman filtering</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Algorithm development, implementation, flight software development, mission simulation, verification and validation</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Multidisciplinary (hardware, electronics, and software) integrated system development and operation</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Dynamic stabilization\isolation, passive vibration control, active vibration control</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Model characterization and performance predictions\evaluations</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Modal\Random Vibration\Acoustic\Shock model predictions, testing and correlation</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Definition and documentation of system specifications</span></li> </ul> <p> </p> <p> </p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><strong>Qualifications:</strong></span></p> <ul> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Bachelor’s Degree in Mechanical Engineering or other related engineering or science degree and minimum 4 years of prior relevant experience. Graduate Degree and a minimum of 2 years of prior related experience. In lieu of a degree, minimum of 8 years of prior related experience.</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Professional experience with dynamic stabilization\isolation, passive vibration control, active vibration control.</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">2+ years of experience using MATLAB and Simulink.</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Professional experience with algorithm development and implementation for aerospace applications</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Ability to obtain a U.S. TS/SCI Security Clearance</span></li> </ul> <p> </p> <p> </p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><strong>Preferred Additional Skills:</strong></span></p> <ul> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Active TS/SCI Clearance is preferred but not required</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Proficient in FE modeling and analysis tools, MATLAB, Simulink, C/C++</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Knowledge of astrodynamics principles relevant to remote sensing. Familiarity with space mission analysis and design impacts on remote sensing.</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">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.</span></li> <li style="font-family:verdana, geneva, sans-serif;font-size:14.0pt"><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">Preferred experience with real-time control implementation, and embedded C/C++ programming.</span></li> </ul> <p> </p> <p> </p> <p><span style="font-family:verdana, geneva, sans-serif;font-size:14.0pt">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 $75,500.00 - $142,500.00. 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.</span></p> <p> </p>