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Optical Simulation Engineer Jobs in Dallas, TX (NOW HIRING)

As a Senior Optical Engineer supporting the Intraocular Lens (IOL) R&D and Advanced Optics team ... Leading end-to-end optical design and simulation using Zemax/Code V, developing proprietary optics ...

Lead Field Engineer

Arlington, TX · On-site

$92K - $121K/yr

Summary Perform a variety of duties in the electronic, mechanical, electromechanical, or optical ... Providing oversight on the preparation of simulators for regulatory evaluations * Supporting our ...

Lead Field Engineer

Arlington, TX

$92K - $121K/yr

Summary Perform a variety of duties in the electronic, mechanical, electromechanical, or optical ... Providing oversight on the preparation of simulators for regulatory evaluations * Supporting our ...

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Showing results 1-20

Optical Simulation Engineer information

See Dallas, TX salary details

$82.1K

$142.1K

$166.7K

How much do optical simulation engineer jobs pay per year?

As of Jun 10, 2026, the average yearly pay for optical simulation engineer in Dallas, TX is $142,065.00, according to ZipRecruiter salary data. Most workers in this role earn between $127,600.00 and $165,200.00 per year, depending on experience, location, and employer.

What is an Optical Simulation Engineer?

An Optical Simulation Engineer is a professional who uses specialized software and modeling techniques to design, analyze, and optimize optical systems such as lenses, lasers, and imaging devices. They simulate the behavior of light within these systems to predict performance and identify potential issues before physical prototypes are built. These engineers work closely with product development teams in industries like telecommunications, aerospace, automotive, and consumer electronics. Their expertise helps to improve efficiency, reduce costs, and ensure the quality of optical products.

What are the main challenges an Optical Simulation Engineer faces when working on multidisciplinary project teams?

Optical Simulation Engineers often collaborate closely with mechanical, electrical, and software engineers to ensure that optical designs integrate seamlessly into larger systems. A common challenge is translating complex optical requirements into terms that colleagues from other disciplines can understand, while also adapting simulations to reflect real-world constraints such as tolerances and material properties. Effective communication and flexibility are essential, as project requirements can evolve rapidly and may require iterative simulations or adjustments. Building strong cross-functional relationships can help overcome these challenges and lead to more robust, innovative solutions.

What is the difference between Optical Simulation Engineer vs Optical Design Engineer?

AspectOptical Simulation EngineerOptical Design Engineer
Required CredentialsBachelor's or Master's in optics, physics, or engineering; proficiency in simulation softwareBachelor's or Master's in optics, physics, or engineering; strong design and analytical skills
Work EnvironmentPrimarily uses simulation tools to model optical systems; collaborates with design teamsDesigns and develops optical components and systems; often involved in prototyping
Employer & Industry UsageOptics companies, research labs, aerospace, and defenseOptics and photonics companies, consumer electronics, and medical device industries

Both roles require a background in optics and engineering, but Optical Simulation Engineers focus on modeling and analysis using simulation software, while Optical Design Engineers are more involved in creating and optimizing physical optical systems. They often work together but have distinct responsibilities within the optical development process.

What are the key skills and qualifications needed to thrive as an Optical Simulation Engineer, and why are they important?

To thrive as an Optical Simulation Engineer, you need expertise in optics, physics, and mathematics, typically with a degree in optical engineering or a related field. Proficiency in simulation software such as Zemax, LightTools, or COMSOL Multiphysics, along with familiarity with programming languages like Python or MATLAB, is commonly required. Strong problem-solving skills, attention to detail, and effective communication are crucial for collaborating with interdisciplinary teams and conveying complex technical concepts. These abilities ensure accurate optical system modeling, efficient project workflows, and successful development of innovative optical products.
What are popular job titles related to Optical Simulation Engineer jobs in Dallas, TX? For Optical Simulation Engineer jobs in Dallas, TX, the most frequently searched job titles are:
What job categories do people searching Optical Simulation Engineer jobs in Dallas, TX look for? The top searched job categories for Optical Simulation Engineer jobs in Dallas, TX are:

GNC/ Simulation Engineer

Delta Black Aerospace Inc

Mckinney, TX • On-site

Full-time

Medical, Dental, Vision, Retirement

Posted 23 days ago


Job description

Description:

Delta Black Aerospace is seeking a Guidance, Navigation & Control (GNC) and Simulation Engineer to own the navigation and autonomy architecture of the RAIDER 330 UAS. This is a high-impact, highly technical role responsible for developing GNC algorithms, building high-fidelity vehicle simulation environments, and validating navigation performance across the full mission envelope — including GPS-denied and electromagnetically contested environments. You will bridge the world of mathematical modeling and real hardware, working tightly with the integration and flight test teams to tune, validate, and field navigation solutions that perform when it matters most. Proficiency with Simulink is required; experience with Applied Navigation’s Quattro FMS and Vigilant Spirit is strongly preferred.


KEY RESPONSIBILITIES


» Develop, implement, and tune GNC algorithms for the RAIDER 330 across VTOL, transition, cruise, and E-STOL flight regimes

» Build and maintain a high-fidelity 6-DOF simulation environment in MATLAB/Simulink, including aerodynamic models, hybrid-electric propulsion dynamics, actuator models, and sensor noise models

» Design and validate navigation filter architectures including Extended Kalman Filters (EKF), Unscented Kalman Filters (UKF), or factor graph-based estimators for multi-sensor fusion

» Integrate and evaluate navigation sensors including IMU, GPS/GNSS, barometric altimeter, optical flow, and radar altimeter into a cohesive navigation solution

» Develop GPS-denied and GNSS-degraded navigation capabilities leveraging sensor fusion, dead reckoning, ter-rain-aided navigation, or visual-inertial odometry

» Support hardware-in-the-loop (HIL) and software-in-the-loop (SIL) test campaigns to validate GNC performance against simulation predictions

» Configure and integrate INS/GPS systems, including interface definition, initialization procedures, and in-flight calibration routines

» Support Ground Control Station (GCS) integration including data link configuration, GCS-to-aircraft command/control interface, and mission planning workflows

» Perform Monte Carlo analysis, trajectory optimization, and performance sensitivity studies to bound navigation accuracy across environmental conditions

» Collaborate with flight test engineers to design GNC-specific test cards, analyze flight data, and close the loop between simulation predictions and measured flight results

» Maintain GNC documentation including algorithm design documents, simulation validation reports, and navigation performance specifications

» Support autopilot tuning and flight control law refinement for all RAIDER 330 flight modes.

Requirements:

REQUIRED QUALIFICATIONS


» Bachelor of Science in Aerospace Engineering, Electrical Engineering, Applied Mathematics, or related discipline; Master’s degree preferred

» 3+ years of GNC engineering experience on aerospace, defense, or UAS platforms

» Expert-level proficiency in MATLAB and Simulink, including model-based design and code generation workflows

» Strong foundation in estimation theory, multi-sensor data fusion, and inertial navigation fundamentals

» Demonstrated experience developing and validating navigation filters (EKF, UKF, or equivalent) in simulation and on hardware

» Familiarity with 6-DOF rigid body dynamics, flight mechanics, and aerodynamic modeling

» Experience with GPS-denied or GNSS-degraded navigation techniques

» Strong analytical and debugging skills — comfortable tracing navigation errors from sensor input through algorithm output to flight behavior

» Proficiency in Python and/or C/C++ for embedded GNC implementation and data analysis


PREFERRED QUALIFICATIONS


» Hands-on experience with Applied Navigation hardware and software integration on airborne platforms

» Operational or integration experience with Vigilant Spirit including mission planning, payload control, and C2 link configuration

» Experience with contested/denied/degraded navigation environments and electronic warfare considerations for UAS

» Background with trajectory optimization tools or real-time path planning algorithms

» Experience with ROS or similar middleware for sensor integration and GNC prototyping

» Knowledge of relevant navigation standards such as STANAG 4671, ARP4754A, or DO-316

» Active Secret or Top Secret/SCI clearance

» Prior experience supporting GNC for DoD acquisition programs, OTAs, or SBIR/STTR efforts


SECURITY CLEARANCE


Active Secret clearance required; Top Secret/SCI strongly preferred given the contested-environment and GPS-denied nature of RAIDER 330 mission sets. U.S. Citizenship required.


COMPENSATION & BENEFITS


» Competitive base salary commensurate with experience; equity participation available

» Full medical, dental, and vision benefits

» 401(k) with company contribution

» Opportunity for rapid career advancement in a high-growth defense technology company

» Direct collaboration with former Warfighters and senior UAS industry experts

» Travel to test sites and partner facilities as required to support simulation validation and flight test campaigns